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      <journal-id journal-id-type="ojs">IE</journal-id>
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          <trans-title>STROITEL'NYE I DOROZHNYE MASHINY</trans-title>
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      <issn pub-type="ppub">0039-2391</issn>
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      <article-id pub-id-type="publisher-id">193</article-id>
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          <subject>&#x421;&#x422;&#x420;&#x41E;&#x418;&#x422;&#x415;&#x41B;&#x42C;&#x421;&#x422;&#x412;&#x41E; &#x418; &#x410;&#x420;&#x425;&#x418;&#x422;&#x415;&#x41A;&#x422;&#x423;&#x420;&#x410;</subject>
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        <article-title xml:lang="ru">&#x424;&#x43E;&#x442;&#x43E;&#x438;&#x43D;&#x434;&#x443;&#x446;&#x438;&#x440;&#x43E;&#x432;&#x430;&#x43D;&#x43D;&#x43E;&#x435; &#x443;&#x43F;&#x43E;&#x440;&#x44F;&#x434;&#x43E;&#x447;&#x435;&#x43D;&#x438;&#x435; &#x438; &#x434;&#x435;&#x444;&#x43E;&#x440;&#x43C;&#x430;&#x446;&#x438;&#x44F; &#x430;&#x437;&#x43E;&#x431;&#x435;&#x43D;&#x437;&#x43E;&#x43B;-&#x441;&#x43E;&#x434;&#x435;&#x440;&#x436;&#x430;&#x449;&#x438;&#x445; &#x43F;&#x43E;&#x43B;&#x438;&#x43C;&#x435;&#x440;&#x43E;&#x432; &#x43F;&#x43E;&#x434; &#x432;&#x43E;&#x437;&#x434;&#x435;&#x439;&#x441;&#x442;&#x432;&#x438;&#x435;&#x43C; &#x446;&#x438;&#x440;&#x43A;&#x443;&#x43B;&#x44F;&#x440;&#x43D;&#x43E;-&#x43F;&#x43E;&#x43B;&#x44F;&#x440;&#x438;&#x437;&#x43E;&#x432;&#x430;&#x43D;&#x43D;&#x43E;&#x433;&#x43E; &#x441;&#x432;&#x435;&#x442;&#x430;</article-title>
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          <trans-title>Photoinduced ordering and deformation of azobenzene-containing polymers under illumination with circularly polarized light</trans-title>
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              <surname>Toshchevikov</surname>
              <given-names>Vladimir P.</given-names>
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          <institution content-type="orgname">The Institute of High Molecular Weight Compounds (PIAF-IVS) is a branch of the St. Petersburg Institute of Nuclear Physics named after B.P. Konstantinov of the Kurchatov Institute National Research Center, 199004, Saint Petersburg, Bolshoy pr. V.O., 31</institution>
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      <pub-date date-type="pub" publication-format="epub">
        <day>30</day>
        <month>10</month>
        <year>2025</year>
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      <volume>69</volume>
      <issue>10</issue>
      <fpage>31</fpage>
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        <copyright-statement xml:lang="en">&#xA9; 2025 STROITEL'NYE I DOROZHNYE MASHINY. All rights reserved.</copyright-statement>
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        <copyright-holder xml:lang="en">STROITEL'NYE I DOROZHNYE MASHINY</copyright-holder>
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          <license-p>The metadata of this record are distributed under the Creative Commons CC0 1.0 Universal Public Domain Dedication.</license-p>
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      <abstract xml:lang="ru">
        <p>&#x41E;&#x434;&#x43D;&#x43E;&#x439; &#x438;&#x437; &#x430;&#x43A;&#x442;&#x443;&#x430;&#x43B;&#x44C;&#x43D;&#x44B;&#x445; &#x437;&#x430;&#x434;&#x430;&#x447; &#x432; &#x43C;&#x430;&#x442;&#x435;&#x440;&#x438;&#x430;&#x43B;&#x43E;&#x432;&#x435;&#x434;&#x435;&#x43D;&#x438;&#x438; &#x44F;&#x432;&#x43B;&#x44F;&#x435;&#x442;&#x441;&#x44F; &#x441;&#x43E;&#x437;&#x434;&#x430;&#x43D;&#x438;&#x435; &#x441;&#x442;&#x438;&#x43C;&#x443;&#x43B;-&#x447;&#x443;&#x432;&#x441;&#x442;&#x432;&#x438;&#x442;&#x435;&#x43B;&#x44C;&#x43D;&#x44B;&#x445; &#x43C;&#x430;&#x442;&#x435;&#x440;&#x438;&#x430;&#x43B;&#x43E;&#x432;, &#x441;&#x43F;&#x43E;&#x441;&#x43E;&#x431;&#x43D;&#x44B;&#x445; &#x438;&#x437;&#x43C;&#x435;&#x43D;&#x44F;&#x442;&#x44C; &#x441;&#x432;&#x43E;&#x438; &#x441;&#x432;&#x43E;&#x439;&#x441;&#x442;&#x432;&#x430; &#x43F;&#x43E;&#x434; &#x432;&#x43B;&#x438;&#x44F;&#x43D;&#x438;&#x435;&#x43C; &#x432;&#x43D;&#x435;&#x448;&#x43D;&#x438;&#x445; &#x432;&#x43E;&#x437;&#x434;&#x435;&#x439;&#x441;&#x442;&#x432;&#x438;&#x439;. &#x410;&#x437;&#x43E;&#x431;&#x435;&#x43D;&#x437;&#x43E;&#x43B;-&#x441;&#x43E;&#x434;&#x435;&#x440;&#x436;&#x430;&#x449;&#x438;&#x435; &#x43F;&#x43E;&#x43B;&#x438;&#x43C;&#x435;&#x440;&#x44B; &#x438;&#x437;&#x43C;&#x435;&#x43D;&#x44F;&#x44E;&#x442; &#x441;&#x432;&#x43E;&#x438; &#x441;&#x432;&#x43E;&#x439;&#x441;&#x442;&#x432;&#x430; &#x43F;&#x43E;&#x434; &#x432;&#x43E;&#x437;&#x434;&#x435;&#x439;&#x441;&#x442;&#x432;&#x438;&#x435;&#x43C; &#x441;&#x432;&#x435;&#x442;&#x430;. &#x42D;&#x442;&#x438; &#x43F;&#x43E;&#x43B;&#x438;&#x43C;&#x435;&#x440;&#x44B; &#x441;&#x43E;&#x434;&#x435;&#x440;&#x436;&#x430;&#x442; &#x432; &#x441;&#x432;&#x43E;&#x435;&#x43C; &#x441;&#x43E;&#x441;&#x442;&#x430;&#x432;&#x435; &#x430;&#x437;&#x43E;&#x431;&#x435;&#x43D;&#x437;&#x43E;&#x43B;&#x44C;&#x43D;&#x44B;&#x435; &#x445;&#x440;&#x43E;&#x43C;&#x43E;&#x444;&#x43E;&#x440;&#x44B;, &#x43A;&#x43E;&#x442;&#x43E;&#x440;&#x44B;&#x435; &#x43F;&#x435;&#x440;&#x435;&#x445;&#x43E;&#x434;&#x44F;&#x442; &#x438;&#x437; &#x43E;&#x441;&#x43D;&#x43E;&#x432;&#x43D;&#x43E;&#x433;&#x43E; &#x442;&#x440;&#x430;&#x43D;&#x441;-&#x441;&#x43E;&#x441;&#x442;&#x43E;&#x44F;&#x43D;&#x438;&#x44F; &#x432; &#x432;&#x43E;&#x437;&#x431;&#x443;&#x436;&#x434;&#x435;&#x43D;&#x43D;&#x43E;&#x435; &#x446;&#x438;&#x441;-&#x441;&#x43E;&#x441;&#x442;&#x43E;&#x44F;&#x43D;&#x438;&#x435; &#x43F;&#x440;&#x438; &#x441;&#x432;&#x435;&#x442;&#x43E;&#x432;&#x43E;&#x43C; &#x43E;&#x431;&#x43B;&#x443;&#x447;&#x435;&#x43D;&#x438;&#x438;. &#x412;&#x435;&#x440;&#x43E;&#x44F;&#x442;&#x43D;&#x43E;&#x441;&#x442;&#x44C; &#x442;&#x440;&#x430;&#x43D;&#x441;-&#x446;&#x438;&#x441; &#x43F;&#x435;&#x440;&#x435;&#x445;&#x43E;&#x434;&#x430; &#x437;&#x430;&#x432;&#x438;&#x441;&#x438;&#x442; &#x43E;&#x442; &#x43E;&#x440;&#x438;&#x435;&#x43D;&#x442;&#x430;&#x446;&#x438;&#x438; &#x445;&#x440;&#x43E;&#x43C;&#x43E;&#x444;&#x43E;&#x440;&#x430; &#x43F;&#x43E; &#x43E;&#x442;&#x43D;&#x43E;&#x448;&#x435;&#x43D;&#x438;&#x44E; &#x43A; &#x43F;&#x43E;&#x43B;&#x44F;&#x440;&#x438;&#x437;&#x430;&#x446;&#x438;&#x438; &#x441;&#x432;&#x435;&#x442;&#x430;, &#x447;&#x442;&#x43E; &#x43F;&#x440;&#x438;&#x432;&#x43E;&#x434;&#x438;&#x442; &#x43A; &#x43E;&#x440;&#x438;&#x435;&#x43D;&#x442;&#x430;&#x446;&#x438;&#x43E;&#x43D;&#x43D;&#x43E;&#x43C;&#x443; &#x443;&#x43F;&#x43E;&#x440;&#x44F;&#x434;&#x43E;&#x447;&#x435;&#x43D;&#x438;&#x44E; &#x438; &#x434;&#x435;&#x444;&#x43E;&#x440;&#x43C;&#x430;&#x446;&#x438;&#x438; &#x44D;&#x442;&#x438;&#x445; &#x43F;&#x43E;&#x43B;&#x438;&#x43C;&#x435;&#x440;&#x43E;&#x432;. &#x41D;&#x430;&#x441;&#x442;&#x43E;&#x44F;&#x449;&#x430;&#x44F; &#x440;&#x430;&#x431;&#x43E;&#x442;&#x430; &#x43F;&#x43E;&#x441;&#x432;&#x44F;&#x449;&#x435;&#x43D;&#x430; &#x440;&#x430;&#x437;&#x432;&#x438;&#x442;&#x438;&#x44E; &#x442;&#x435;&#x43E;&#x440;&#x438;&#x438; &#x43A;&#x438;&#x43D;&#x435;&#x442;&#x438;&#x43A;&#x438; &#x444;&#x43E;&#x442;&#x43E;&#x438;&#x43D;&#x434;&#x443;&#x446;&#x438;&#x440;&#x43E;&#x432;&#x430;&#x43D;&#x43D;&#x43E;&#x433;&#x43E; &#x443;&#x43F;&#x43E;&#x440;&#x44F;&#x434;&#x43E;&#x447;&#x435;&#x43D;&#x438;&#x44F; &#x438; &#x434;&#x435;&#x444;&#x43E;&#x440;&#x43C;&#x430;&#x446;&#x438;&#x438; &#x430;&#x437;&#x43E;&#x431;&#x435;&#x43D;&#x437;&#x43E;&#x43B;-&#x441;&#x43E;&#x434;&#x435;&#x440;&#x436;&#x430;&#x449;&#x438;&#x445; &#x43F;&#x43E;&#x43B;&#x438;&#x43C;&#x435;&#x440;&#x43E;&#x432;. &#x412; &#x43F;&#x440;&#x435;&#x434;&#x44B;&#x434;&#x443;&#x449;&#x438;&#x445; &#x442;&#x435;&#x43E;&#x440;&#x435;&#x442;&#x438;&#x447;&#x435;&#x441;&#x43A;&#x438;&#x445; &#x440;&#x430;&#x431;&#x43E;&#x442;&#x430;&#x445; &#x438;&#x441;&#x441;&#x43B;&#x435;&#x434;&#x43E;&#x432;&#x430;&#x43D;&#x430; &#x434;&#x435;&#x444;&#x43E;&#x440;&#x43C;&#x430;&#x446;&#x438;&#x44F; &#x430;&#x437;&#x43E;&#x431;&#x435;&#x43D;&#x437;&#x43E;&#x43B;-&#x441;&#x43E;&#x434;&#x435;&#x440;&#x436;&#x430;&#x449;&#x438;&#x445; &#x43F;&#x43E;&#x43B;&#x438;&#x43C;&#x435;&#x440;&#x43E;&#x432; &#x432; &#x441;&#x442;&#x430;&#x446;&#x438;&#x43E;&#x43D;&#x430;&#x440;&#x43D;&#x43E;&#x43C; &#x441;&#x43E;&#x441;&#x442;&#x43E;&#x44F;&#x43D;&#x438;&#x438; &#x43F;&#x43E;&#x434; &#x432;&#x43E;&#x437;&#x434;&#x435;&#x439;&#x441;&#x442;&#x432;&#x438;&#x435;&#x43C; &#x441;&#x432;&#x435;&#x442;&#x430;, &#x430; &#x442;&#x430;&#x43A;&#x436;&#x435; &#x43A;&#x438;&#x43D;&#x435;&#x442;&#x438;&#x43A;&#x430; &#x434;&#x435;&#x444;&#x43E;&#x440;&#x43C;&#x430;&#x446;&#x438;&#x438; &#x43F;&#x43E;&#x434; &#x432;&#x43B;&#x438;&#x44F;&#x43D;&#x438;&#x435;&#x43C; &#x43B;&#x438;&#x43D;&#x435;&#x439;&#x43D;&#x43E;-&#x43F;&#x43E;&#x43B;&#x44F;&#x440;&#x438;&#x437;&#x43E;&#x432;&#x430;&#x43D;&#x43D;&#x43E;&#x433;&#x43E; &#x441;&#x432;&#x435;&#x442;&#x430;. &#x412; &#x43D;&#x430;&#x441;&#x442;&#x43E;&#x44F;&#x449;&#x435;&#x439; &#x440;&#x430;&#x431;&#x43E;&#x442;&#x435; &#x43F;&#x440;&#x435;&#x434;&#x43B;&#x43E;&#x436;&#x435;&#x43D;&#x430; &#x442;&#x435;&#x43E;&#x440;&#x438;&#x44F; &#x43A;&#x438;&#x43D;&#x435;&#x442;&#x438;&#x43A;&#x438; &#x434;&#x435;&#x444;&#x43E;&#x440;&#x43C;&#x430;&#x446;&#x438;&#x438; &#x438; &#x443;&#x43F;&#x43E;&#x440;&#x44F;&#x434;&#x43E;&#x447;&#x435;&#x43D;&#x438;&#x44F; &#x44D;&#x442;&#x438;&#x445; &#x43F;&#x43E;&#x43B;&#x438;&#x43C;&#x435;&#x440;&#x43E;&#x432; &#x43F;&#x43E;&#x434; &#x432;&#x43E;&#x437;&#x434;&#x435;&#x439;&#x441;&#x442;&#x432;&#x438;&#x435;&#x43C; &#x446;&#x438;&#x440;&#x43A;&#x443;&#x43B;&#x44F;&#x440;&#x43D;&#x43E;-&#x43F;&#x43E;&#x43B;&#x44F;&#x440;&#x438;&#x437;&#x43E;&#x432;&#x430;&#x43D;&#x43D;&#x43E;&#x433;&#x43E; &#x441;&#x432;&#x435;&#x442;&#x430;. &#x41F;&#x43E;&#x43A;&#x430;&#x437;&#x430;&#x43D;&#x43E;, &#x447;&#x442;&#x43E; &#x43F;&#x43E;&#x434; &#x432;&#x43E;&#x437;&#x434;&#x435;&#x439;&#x441;&#x442;&#x432;&#x438;&#x435;&#x43C; &#x446;&#x438;&#x440;&#x43A;&#x443;&#x43B;&#x44F;&#x440;&#x43D;&#x43E;-&#x43F;&#x43E;&#x43B;&#x44F;&#x440;&#x438;&#x437;&#x43E;&#x432;&#x430;&#x43D;&#x43D;&#x43E;&#x433;&#x43E; &#x441;&#x432;&#x435;&#x442;&#x430; &#x43E;&#x442;&#x43D;&#x43E;&#x441;&#x438;&#x442;&#x435;&#x43B;&#x44C;&#x43D;&#x43E;&#x435; &#x443;&#x434;&#x43B;&#x438;&#x43D;&#x435;&#x43D;&#x438;&#x435; &#x43F;&#x43E;&#x43B;&#x438;&#x43C;&#x435;&#x440;&#x430; &#x432;&#x434;&#x43E;&#x43B;&#x44C; &#x43D;&#x430;&#x43F;&#x440;&#x430;&#x432;&#x43B;&#x435;&#x43D;&#x438;&#x44F; &#x440;&#x430;&#x441;&#x43F;&#x440;&#x43E;&#x441;&#x442;&#x440;&#x430;&#x43D;&#x435;&#x43D;&#x438;&#x44F; &#x441;&#x432;&#x435;&#x442;&#x430; &#x43C;&#x43E;&#x436;&#x435;&#x442; &#x434;&#x43E;&#x441;&#x442;&#x438;&#x433;&#x430;&#x442;&#x44C; &#x437;&#x43D;&#x430;&#x447;&#x435;&#x43D;&#x438;&#x439; &#x432; 2 &#x440;&#x430;&#x437;&#x430; &#x432;&#x44B;&#x448;&#x435;, &#x447;&#x435;&#x43C; &#x43F;&#x440;&#x438; &#x43E;&#x431;&#x43B;&#x443;&#x447;&#x435;&#x43D;&#x438;&#x438; &#x43B;&#x438;&#x43D;&#x435;&#x439;&#x43D;&#x43E;-&#x43F;&#x43E;&#x43B;&#x44F;&#x440;&#x438;&#x437;&#x43E;&#x432;&#x430;&#x43D;&#x43D;&#x44B;&#x43C; &#x441;&#x432;&#x435;&#x442;&#x43E;&#x43C; &#x442;&#x43E;&#x439; &#x436;&#x435; &#x438;&#x43D;&#x442;&#x435;&#x43D;&#x441;&#x438;&#x432;&#x43D;&#x43E;&#x441;&#x442;&#x438;. &#x427;&#x435;&#x43C; &#x432;&#x44B;&#x448;&#x435; &#x438;&#x43D;&#x442;&#x435;&#x43D;&#x441;&#x438;&#x432;&#x43D;&#x43E;&#x441;&#x442;&#x44C; &#x441;&#x432;&#x435;&#x442;&#x430;, &#x442;&#x435;&#x43C; &#x431;&#x43E;&#x43B;&#x44C;&#x448;&#x435; &#x432;&#x435;&#x43B;&#x438;&#x447;&#x438;&#x43D;&#x430; &#x444;&#x43E;&#x442;&#x43E;&#x438;&#x43D;&#x434;&#x443;&#x446;&#x438;&#x440;&#x43E;&#x432;&#x430;&#x43D;&#x43D;&#x43E;&#x439; &#x434;&#x435;&#x444;&#x43E;&#x440;&#x43C;&#x430;&#x446;&#x438;&#x438;. &#x412; &#x437;&#x430;&#x432;&#x438;&#x441;&#x438;&#x43C;&#x43E;&#x441;&#x442;&#x438; &#x43E;&#x442; &#x441;&#x442;&#x440;&#x443;&#x43A;&#x442;&#x443;&#x440;&#x44B; &#x43F;&#x43E;&#x43B;&#x438;&#x43C;&#x435;&#x440;&#x430; &#x438; &#x43E;&#x440;&#x438;&#x435;&#x43D;&#x442;&#x430;&#x446;&#x438;&#x438; &#x445;&#x440;&#x43E;&#x43C;&#x43E;&#x444;&#x43E;&#x440;&#x43E;&#x432; &#x432; &#x43F;&#x43E;&#x43B;&#x438;&#x43C;&#x435;&#x440;&#x43D;&#x44B;&#x445; &#x446;&#x435;&#x43F;&#x44F;&#x445; &#x43C;&#x43E;&#x436;&#x435;&#x442; &#x43D;&#x430;&#x431;&#x43B;&#x44E;&#x434;&#x430;&#x442;&#x44C;&#x441;&#x44F; &#x43B;&#x438;&#x431;&#x43E; &#x440;&#x430;&#x441;&#x442;&#x44F;&#x436;&#x435;&#x43D;&#x438;&#x435;, &#x43B;&#x438;&#x431;&#x43E; &#x441;&#x436;&#x430;&#x442;&#x438;&#x435; &#x43C;&#x430;&#x442;&#x435;&#x440;&#x438;&#x430;&#x43B;&#x430; &#x432;&#x434;&#x43E;&#x43B;&#x44C; &#x43E;&#x441;&#x438; &#x440;&#x430;&#x441;&#x43F;&#x440;&#x43E;&#x441;&#x442;&#x440;&#x430;&#x43D;&#x435;&#x43D;&#x438;&#x44F; &#x441;&#x432;&#x435;&#x442;&#x430;. &#x420;&#x435;&#x437;&#x443;&#x43B;&#x44C;&#x442;&#x430;&#x442;&#x44B; &#x442;&#x435;&#x43E;&#x440;&#x435;&#x442;&#x438;&#x447;&#x435;&#x441;&#x43A;&#x438;&#x445; &#x440;&#x430;&#x441;&#x447;&#x435;&#x442;&#x43E;&#x432; &#x43D;&#x430;&#x445;&#x43E;&#x434;&#x44F;&#x442;&#x441;&#x44F; &#x432; &#x43A;&#x430;&#x447;&#x435;&#x441;&#x442;&#x432;&#x435;&#x43D;&#x43D;&#x43E;&#x43C; &#x441;&#x43E;&#x433;&#x43B;&#x430;&#x441;&#x438;&#x438; &#x441; &#x438;&#x43C;&#x435;&#x44E;&#x449;&#x438;&#x43C;&#x438;&#x441;&#x44F; &#x432; &#x43B;&#x438;&#x442;&#x435;&#x440;&#x430;&#x442;&#x443;&#x440;&#x435; &#x44D;&#x43A;&#x441;&#x43F;&#x435;&#x440;&#x438;&#x43C;&#x435;&#x43D;&#x442;&#x430;&#x43B;&#x44C;&#x43D;&#x44B;&#x43C;&#x438; &#x434;&#x430;&#x43D;&#x43D;&#x44B;&#x43C;&#x438;. &#x422;&#x430;&#x43A;&#x438;&#x43C; &#x43E;&#x431;&#x440;&#x430;&#x437;&#x43E;&#x43C;, &#x43F;&#x43E;&#x43A;&#x430;&#x437;&#x430;&#x43D;&#x430; &#x432;&#x43E;&#x437;&#x43C;&#x43E;&#x436;&#x43D;&#x43E;&#x441;&#x442;&#x44C; &#x443;&#x43F;&#x440;&#x430;&#x432;&#x43B;&#x435;&#x43D;&#x438;&#x44F; &#x432;&#x435;&#x43B;&#x438;&#x447;&#x438;&#x43D;&#x43E;&#x439; &#x438; &#x43D;&#x430;&#x43F;&#x440;&#x430;&#x432;&#x43B;&#x435;&#x43D;&#x438;&#x435;&#x43C; &#x444;&#x43E;&#x442;&#x43E;&#x438;&#x43D;&#x434;&#x443;&#x446;&#x438;&#x440;&#x43E;&#x432;&#x430;&#x43D;&#x43D;&#x43E;&#x439; &#x434;&#x435;&#x444;&#x43E;&#x440;&#x43C;&#x430;&#x446;&#x438;&#x438; &#x43F;&#x443;&#x442;&#x435;&#x43C; &#x432;&#x430;&#x440;&#x44C;&#x438;&#x440;&#x43E;&#x432;&#x430;&#x43D;&#x438;&#x44F; &#x438;&#x43D;&#x442;&#x435;&#x43D;&#x441;&#x438;&#x432;&#x43D;&#x43E;&#x441;&#x442;&#x438; &#x438; &#x43F;&#x43E;&#x43B;&#x44F;&#x440;&#x438;&#x437;&#x430;&#x446;&#x438;&#x438; &#x441;&#x432;&#x435;&#x442;&#x430;, &#x430; &#x442;&#x430;&#x43A;&#x436;&#x435; &#x43F;&#x443;&#x442;&#x435;&#x43C; &#x438;&#x437;&#x43C;&#x435;&#x43D;&#x435;&#x43D;&#x438;&#x44F; &#x441;&#x442;&#x440;&#x443;&#x43A;&#x442;&#x443;&#x440;&#x44B; &#x43F;&#x43E;&#x43B;&#x438;&#x43C;&#x435;&#x440;&#x430;. &#x420;&#x435;&#x437;&#x443;&#x43B;&#x44C;&#x442;&#x430;&#x442;&#x44B; &#x440;&#x430;&#x431;&#x43E;&#x442;&#x44B; &#x43C;&#x43E;&#x433;&#x443;&#x442; &#x43F;&#x440;&#x435;&#x434;&#x441;&#x442;&#x430;&#x432;&#x43B;&#x44F;&#x442;&#x44C; &#x438;&#x43D;&#x442;&#x435;&#x440;&#x435;&#x441; &#x434;&#x43B;&#x44F; &#x43F;&#x440;&#x430;&#x43A;&#x442;&#x438;&#x447;&#x435;&#x441;&#x43A;&#x438;&#x445; &#x43F;&#x440;&#x438;&#x43B;&#x43E;&#x436;&#x435;&#x43D;&#x438;&#x439;, &#x433;&#x434;&#x435; &#x442;&#x440;&#x435;&#x431;&#x443;&#x435;&#x442;&#x441;&#x44F; &#x443;&#x43F;&#x440;&#x430;&#x432;&#x43B;&#x435;&#x43D;&#x438;&#x435; &#x434;&#x435;&#x444;&#x43E;&#x440;&#x43C;&#x430;&#x446;&#x438;&#x435;&#x439; &#x43C;&#x430;&#x442;&#x435;&#x440;&#x438;&#x430;&#x43B;&#x43E;&#x432; &#x441; &#x43F;&#x43E;&#x43C;&#x43E;&#x449;&#x44C;&#x44E; &#x441;&#x432;&#x435;&#x442;&#x43E;&#x432;&#x43E;&#x433;&#x43E; &#x43E;&#x431;&#x43B;&#x443;&#x447;&#x435;&#x43D;&#x438;&#x44F; (&#x438;&#x441;&#x43A;&#x443;&#x441;&#x441;&#x442;&#x432;&#x435;&#x43D;&#x43D;&#x44B;&#x435; &#x43C;&#x44B;&#x448;&#x446;&#x44B;, &#x440;&#x43E;&#x431;&#x43E;&#x442;&#x43E;&#x442;&#x435;&#x445;&#x43D;&#x438;&#x43A;&#x430;, &#x43C;&#x430;&#x448;&#x438;&#x43D;&#x43E;&#x441;&#x442;&#x440;&#x43E;&#x435;&#x43D;&#x438;&#x435; &#x438; &#x442;.&#x434;.).</p>
      </abstract>
      <trans-abstract xml:lang="en">
        <p>One of actual tasks in materials science is the development of stimuli-sensitive materials which are able to change their properties under external influences. Azobenzene-containing polymers change their properties when exposed to light. These polymers contain in their structure azobenzene chromophores which are transformed from the ground trans-state to an excited cis-state under illumination with the light. The probability of the trans-cis transition depends on the orientation of the chromophores relative to the polarization direction of the light, leading to orientational ordering and deformation of these polymers. The present work is devoted to theoretical study of the kinetics of photoinduced ordering and deformation in azobenzene-containing polymers. In previous theoretical works, the deformation of azobenzene-containing polymers under illumination with the light in a steady state, as well as the kinetics of deformation under the influence of linearly polarized light, were investigated. In the present work, the theory of the kinetics of deformation and ordering in these polymers under the influence of circularly polarized light is proposed. It is shown that relative elongation of the polymer along the direction of light propagation under illumination with the circularly polarized light can reach values 2 times higher than under illumination with linearly polarized light of the same intensity. The higher is the light intensity, the greater is the magnitude of photoinduced deformation. Depending on the polymer structure and on the orientation of azobenzene chromophores in polymer chains, either stretching or compression of the material along the direction of light propagation can be observed. The results of theoretical calculations are in qualitative agreement with experimental data available in the literature. Thus, the proposed theory demonstrate&#x44B; the possibility to control the magnitude and direction of photoinduced deformation by varying the intensity and polarization of light, as well as by changing the structure of the polymer material. Results of the work may be of interest for practical applications that require control of deformation of materials using light irradiation (artificial muscles, robotics, mechanical engineering, etc.).</p>
      </trans-abstract>
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        <kwd>materials science</kwd>
        <kwd>photo-active materials</kwd>
        <kwd>azobenzene-containing polymers</kwd>
        <kwd>photo-orientation</kwd>
        <kwd>photo-deformation</kwd>
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        <funding-statement xml:lang="en">The study was conducted without external funding.</funding-statement>
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    <ref-list xml:lang="ru">
      <title>&#x421;&#x43F;&#x438;&#x441;&#x43E;&#x43A; &#x43B;&#x438;&#x442;&#x435;&#x440;&#x430;&#x442;&#x443;&#x440;&#x44B;</title>
      <ref id="R1">
        <mixed-citation>Ambrosio A., Marrucci L., Borbone F., Roviello A., Maddalena P. Light-induced spiral mass transport in azo-polymer films under vortex-beam illumination // Nature communications. 2012. &#x2116; 3. &#x420;. 989</mixed-citation>
      </ref>
      <ref id="R2">
        <mixed-citation>Bobrovsky A., Mochalov K., Solovyeva D., Shibaev V., Cigl M., Hamplova V., Bubnov A. Laser induced formation of craters and hills in azobenzene-containing polymethacrylate films // Soft matter. 2020. &#x2116; 16. &#x440;&#x440;. 5398-5405.</mixed-citation>
      </ref>
      <ref id="R3">
        <mixed-citation>Bublitz D., Helgert M., Fleck B., Wenke L., Hvilstedt S., Ramanujam P.S. Photoinduced deformation of azobenzene polyester films // Applied physics. 2000. &#x2116; 70. &#x440;&#x440;. 863-865.</mixed-citation>
      </ref>
      <ref id="R4">
        <mixed-citation>Chang V.Y., Fedele C., Priimagi A., Shishido A., Barrett C.J. Photoreversible soft azo dye materials: toward optical control of bio-interfaces // Advanced optical materials. 2019. &#x2116; 7. Art. 1900091.</mixed-citation>
      </ref>
      <ref id="R5">
        <mixed-citation>Chigrinov V. G., Kozenkov V. M., Kwok H.-S. Photoalignment of liquid crystalline materials: physics and applications. Hoboken: John Wiley and Sons, 2008. 25 &#x440;.</mixed-citation>
      </ref>
      <ref id="R6">
        <mixed-citation>Gelebart A.H., Mulder D.J., Varga M., Konya A., Vantomme G., Meijer E.W., Selinger R.L.B., Broer D.J. Making waves in a photoactive polymer film // Nature. 2017. &#x2116; 546. &#x420;. 632.</mixed-citation>
      </ref>
      <ref id="R7">
        <mixed-citation>Iamsaard S., Asshoff S.J., Matt B., Kudernac T., Cornelissen J., Fletcher S.P., Katsonis N. Conversion of light into macroscopic helical motion // Nature chemistry. 2014. &#x2116; 6. &#x440;&#x440;. 229-235.</mixed-citation>
      </ref>
      <ref id="R8">
        <mixed-citation>Jelken J., Santer S. Light induced reversible structuring of photosensitive polymer films // RSC advances. 2019. &#x2116; 9. &#x440;&#x440;. 20295-20305.</mixed-citation>
      </ref>
      <ref id="R9">
        <mixed-citation>Jung C. C., Rosenhauer R., Rutloh M., Kempe C., Stumpe J. The generation of three dimensional anisotropies in thin polymer films by angular selective photoproduct formation and annealing // Macromolecules. 2005. &#x2116; 38. &#x440;&#x440;. 4324-4330.</mixed-citation>
      </ref>
      <ref id="R10">
        <mixed-citation>Koch M. The influence of light on a three-arm azobenzene star: a computational study: PhD thesis. TU Dresden. 2022. 14 &#x440;.</mixed-citation>
      </ref>
      <ref id="R11">
        <mixed-citation>Lancia F., Ryabchun A., Nguindjel A.-D., Kwangmettatam S., Katsonis N. Mechanical adaptability of artificial muscles from nanoscale molecular action // Nature &#x441;ommunications. 2019. &#x2116; 10. Art. 4819.</mixed-citation>
      </ref>
      <ref id="R12">
        <mixed-citation>Liu D.Q., Broer D.J. Self-assembled dynamic 3D fingerprints in liquid-crystal coatings towards controllable friction and adhesion // Angewandte chemie international edition. 2014. &#x2116; 53. &#x440;&#x440;. 4542-4546.</mixed-citation>
      </ref>
      <ref id="R13">
        <mixed-citation>Loebner S., Yadav B., Lomadze N., Tverdokhleb N., Donner H., Saphiannikova M., Santer S. Local direction of optomechanical stress in azobenzene containing polymers during surface relief grating formation // Macromolecular materials and engineering. 2022. &#x2116; 31. Art. 2100990.</mixed-citation>
      </ref>
      <ref id="R14">
        <mixed-citation>Mahimwalla Z., Yager K.G., Mamiya J., Shishido A., Priimagi A., Barrett C.J. Azobenzene photomechanics: prospects and potential applications // Polymer bulletin. 2012. &#x2116; 69. &#x440;&#x440;. 967-1006</mixed-citation>
      </ref>
      <ref id="R15">
        <mixed-citation>Mitus A. C., Saphiannikova M., Radosz W., Toshchevikov V., Pawlik G. Modeling of nonlinear optical phenomena in host-guest systems using bond fluctuation monte carlo model: a review // Materials. 2021. &#x2116; 14. Art. 1454.</mixed-citation>
      </ref>
      <ref id="R16">
        <mixed-citation>Oscurato S.L., Salvatore M., Maddalena P., Ambrosio A. From nanoscopic to macroscopic photo-driven motion in azobenzene-containing materials // Nanophotonics. 2018. &#x2116; 7. &#x440;&#x440;. 1387-1422.</mixed-citation>
      </ref>
      <ref id="R17">
        <mixed-citation>Priimagi A., Shevchenko A. Azopolymer-based micro- and nanopatterning for photonic applications // Journal of polymer science. Part B: Polymer physics. 2014. &#x2116; 52. &#x440;&#x440;. 163-182.</mixed-citation>
      </ref>
      <ref id="R18">
        <mixed-citation>Priimagi A., Shimamura A., Kondo M., Hiraoka T., Kubo Sh., Mamiya J.-I., Kinoshita M., Ikeda T., Shishido A. Location of the azobenzene moieties within the cross-linked liquid-crystalline polymers can dictate the direction of photoinduced bending // ACS macro letters. 2012. &#x2116; 1. &#x440;&#x440;. 96-99.</mixed-citation>
      </ref>
      <ref id="R19">
        <mixed-citation>Rekola H., Berdin A., Fedele C., Virkki M., Priimagi A. Digital holographic microscopy for real time observation of surface-relief grating formation on azobenzene-containing films // Scientific reports. 2020. &#x2116; 10. Art. 19642.</mixed-citation>
      </ref>
      <ref id="R20">
        <mixed-citation>Ryabchun A., Bobrovsky A., Stumpe J., Shibaev V. Novel generation of liquid crystalline photo actuators based on stretched porous polyethylene films // Macromolecular rapid communications. 2012. &#x2116; 33. &#x440;&#x440;. 991-997.</mixed-citation>
      </ref>
      <ref id="R21">
        <mixed-citation>Seki T. Light-directed alignment, surface morphing and related processes: recent trends // Journal of materials chemistry C. 2016. &#x2116; 4. &#x440;&#x440;. 7895-7910.</mixed-citation>
      </ref>
      <ref id="R22">
        <mixed-citation>Slussarenko S., Murauski A., Du T., Chigrinov V., Marrucci L., Santamato E. Tunable liquid crystal q-plates with arbitrary topological charge. Glasgow: Optics Express, 2011. &#x2116; 19. &#x440;&#x440;. 4085-4090.</mixed-citation>
      </ref>
      <ref id="R23">
        <mixed-citation>Tabiryan N., Roberts D., Steeves D., Kimball B. New 4G optics technology extends limits to the extremes // Photonics spectra. 2017. &#x2116; 51. &#x440;&#x440;. 46-50.</mixed-citation>
      </ref>
      <ref id="R24">
        <mixed-citation>Tabiryan N.V., Roberts D.E., Liao Z., Hwang J.-Y., Moran M., Ouskova O., Pshenichnyi A., Sigley J., Tabirian A., Vergara R., De Sio L., Kimball B. R., Steeves D.M., Slagle J., McConney M.E., Bunning T.J. Advances in transparent planar optics: enabling large aperture, ultrathin lenses // Advanced optical materials. 2021. &#x2116; 9. Art. 2001692.</mixed-citation>
      </ref>
      <ref id="R25">
        <mixed-citation>Toshchevikov V., Ilnytskyi J., Saphiannikova M. Photoisomerization kinetics and mechanical stress in azobenzene-containing materials // Journal of physical chemistry. 2017. &#x2116; 8. &#x440;&#x440;. 1094-1098.</mixed-citation>
      </ref>
      <ref id="R26">
        <mixed-citation>Toshchevikov V., Petrova T., Saphiannikova M. Kinetics of light-induced ordering and deformation in lc azobenzene-containing materials // Soft matter. 2017. &#x2116; 13. &#x440;&#x440;. 2823-2835.</mixed-citation>
      </ref>
      <ref id="R27">
        <mixed-citation>Toshchevikov V., Saphiannikova M. Theory of light-induced deformation of azobenzene elastomers: effects of the liquidcrystalline interactions and biaxiality //Journal of physical chemistry B. 2014. &#x2116; 118. &#x440;&#x440;. 12297-12309.</mixed-citation>
      </ref>
      <ref id="R28">
        <mixed-citation>Toshchevikov V.P., Saphiannikova M., Heinrich G. Microscopic theory of light-induced deformation in amorphous side-chain azobenzene polymers // Journal of physical chemistry. 2009. &#x2116; 113. &#x440;&#x440;. 5032-5045.</mixed-citation>
      </ref>
      <ref id="R29">
        <mixed-citation>Toshchevikov V.P., Saphiannikova M., Heinrich G. Theory of light-induced deformation of azobenzene elastomers: Influence of network structure // Journal of chemical physics. 2012. &#x2116; 137. Art. 024903.</mixed-citation>
      </ref>
      <ref id="R30">
        <mixed-citation>Wang D.H., Lee K.M., Yu.Zh., Koerner H., Vaia R.A., White T.J., Tan L.S. Photomechanical response of glassy azobenzene polyimide networks // Macromolecules. 2011. &#x2116; 44. &#x440;&#x440;. 3840-3846.</mixed-citation>
      </ref>
      <ref id="R31">
        <mixed-citation>Wang X. Photoresponsive liquid crystal elastomers. Azo polymers: synthesis, functions and applications. Berlin: Springer Berlin Heidelberg, 2016, 230 &#x440;.</mixed-citation>
      </ref>
      <ref id="R32">
        <mixed-citation>Wani O.M., Zeng H., Priimagi A. A light-driven artificial flytrap // Nature communications. 2017. &#x2116; 8. Art. 15546.</mixed-citation>
      </ref>
      <ref id="R33">
        <mixed-citation>Ware T.H., McConney M.E., Wie J.J., Tondiglia V.P., White T J. Voxelated liquid crystal elastomers // Science. 2015. &#x2116; 347. &#x440;&#x440;. 982-984.</mixed-citation>
      </ref>
      <ref id="R34">
        <mixed-citation>White T., Broer D. Programmable and adaptive mechanics with liquid crystal polymer networks and elastomers // Nature materials. 2015. &#x2116; 14. &#x440;&#x440;. 1087-1098</mixed-citation>
      </ref>
      <ref id="R35">
        <mixed-citation>White T.J. Photomechanical effects in liquid-crystalline polymer networks and elastomers. In book: Photomechanical materials, composites and systems: wireless transduction of light into work. NY: John Wiley and Sons, 2017.</mixed-citation>
      </ref>
      <ref id="R36">
        <mixed-citation>Yadav B., Domurath J., Kim K., Lee S., Saphiannikova M. Orientation approach to directional photodeformations in glassy side-chain azopolymers // Journal of physical chemistry B. 2019. &#x2116; 123. &#x440;&#x440;. 3337-3347.</mixed-citation>
      </ref>
    </ref-list>
  </back>
</article>
