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(2017)</a>. </div> <div class="abstract">Summary: We consider a generalized Langevin equation with regularized Prabhakar derivative operator. We analyze the mean square displacement, time-dependent diffusion coefficient and velocity autocorrelation function. We further introduce the so-called tempered regularized Prabhakar derivative and analyze the corresponding generalized Langevin equation with friction term represented through the tempered derivative. Various diffusive behaviors are observed. We show the importance of the three parameter Mittag-Leffler function in the description of anomalous diffusion in complex media. We also give analytical results related to the generalized Langevin equation for a harmonic oscillator with generalized friction. The normalized displacement correlation function shows different behaviors, such as monotonic and non-monotonic decay without zero-crossings, oscillation-like behavior without zero-crossings, critical behavior, and oscillation-like behavior with zero-crossings. These various behaviors appear due to the friction of the complex environment represented by the Mittag-Leffler and tempered Mittag-Leffler memory kernels. Depending on the values of the friction parameters in the system, either diffusion or oscillations dominate.</div> <div class="clear"></div> <br> <div class="citations"><div class="clear"><a href="/?q=ci%3A6898695">Cited in <strong>1</strong> Review</a></div><div class="clear"><a href="/?q=rf%3A6898695">Cited in <strong>29</strong> Documents</a></div></div> <div class="classification"> <h3>MSC:</h3> <table><tr> <td> <a class="mono" href="/classification/?q=cc%3A82C31" title="MSC2020">82C31</a> </td> <td class="space"> Stochastic methods (Fokker-Planck, Langevin, etc.) applied to problems in time-dependent statistical mechanics </td> </tr><tr> <td> <a class="mono" href="/classification/?q=cc%3A35Q82" title="MSC2020">35Q82</a> </td> <td class="space"> PDEs in connection with statistical mechanics </td> </tr><tr> <td> <a class="mono" href="/classification/?q=cc%3A82C27" title="MSC2020">82C27</a> </td> <td class="space"> Dynamic critical phenomena in statistical mechanics </td> </tr></table> </div><div class="keywords"> <h3>Keywords:</h3><a href="/?q=ut%3Ageneralized+Langevin+equation">generalized Langevin equation</a>; <a href="/?q=ut%3Aregularized+Prabhakar+derivative">regularized Prabhakar derivative</a>; <a href="/?q=ut%3Atempered+memory+kernel">tempered memory kernel</a>; <a href="/?q=ut%3AMittag-Leffler+functions">Mittag-Leffler functions</a></div> <div class="software"> <h3>Software:</h3><a href="/software/20907">ML</a></div> <!-- Modal used to show zbmath metadata in different output formats--> <div class="modal fade" id="metadataModal" tabindex="-1" role="dialog" aria-labelledby="myModalLabel"> <div class="modal-dialog" role="document"> <div class="modal-content"> <div class="modal-header"> <button type="button" class="close" data-dismiss="modal" aria-label="Close"><span aria-hidden="true">×</span></button> <h4 class="modal-title" id="myModalLabel">Cite</h4> </div> <div class="modal-body"> <div class="form-group"> <label for="select-output" class="control-label">Format</label> <select id="select-output" class="form-control" aria-label="Select Metadata format"></select> </div> <div class="form-group"> <label for="metadataText" class="control-label">Result</label> <textarea class="form-control" id="metadataText" rows="10" style="min-width: 100%;max-width: 100%"></textarea> </div> <div id="metadata-alert" class="alert alert-danger" role="alert" style="display: none;"> <!-- alert for connection errors etc --> </div> </div> <div class="modal-footer"> <button type="button" class="btn btn-primary" onclick="copyMetadata()">Copy to clipboard</button> <button type="button" class="btn btn-default" data-dismiss="modal">Close</button> </div> </div> </div> </div> <div class="functions clearfix"> <div class="function"> <!-- Button trigger metadata modal --> <a type="button" class="btn btn-default btn-xs pdf" data-toggle="modal" data-target="#metadataModal" data-itemtype="Zbl" data-itemname="Zbl 1395.82195" data-ciurl="/ci/06898695" data-biburl="/bibtex/06898695.bib" data-amsurl="/amsrefs/06898695.bib" data-xmlurl="/xml/06898695.xml" > Cite </a> <a class="btn btn-default btn-xs pdf" data-container="body" type="button" href="/pdf/06898695.pdf" title="Zbl 1395.82195 as PDF">Review PDF</a> </div> <div class="fulltexts"> <span class="fulltext">Full Text:</span> <a class="btn btn-default btn-xs" type="button" href="https://doi.org/10.3390/math5040066" aria-label="DOI for “Generalized Langevin equation and the Prabhakar derivative”" title="10.3390/math5040066">DOI</a> </div> <div class="sfx" style="float: right;"> <a href="https://creativecommons.org/licenses/by/4.0/" target="_blank" title="Open Access License" class="cc-license-link no-new-tab-icon"> <img src="https://static.zbmath.org/contrib/img/cc/svg/icons/cc.svg" alt="Creative Commons CC license icon" class="cc-license-icon"> <img src="https://static.zbmath.org/contrib/img/cc/svg/icons/by.svg" alt="Creative Commons BY license icon" class="cc-license-icon"> </a> </div> </div> <div class="references"> <h3>References:</h3> <table><tr> <td>[1]</td> <td class="space">Coffey, W.T.; Kalmykov, Yu.P.; Waldron, J.T.; ; The Langevin Equation: With Applications to Stochastic Problems in Physics, Chemistry and Electrical Engineering: Singapore 2012; . · <a href="/1269.82002" class="nowrap">Zbl 1269.82002</a></td> </tr><tr> <td>[2]</td> <td class="space">Langevin, P.; On the theory of Brownian motion; Comptes Rendus: 1908; Volume 146 ,530-533. · <a href="/39.0847.03" class="nowrap">JFM 39.0847.03</a></td> </tr><tr> <td>[3]</td> <td class="space">Zwanzig, R.; ; Nonequilibrium Statistical Mechanics: New York, NY, USA 2001; . · <a href="/1267.82001" class="nowrap">Zbl 1267.82001</a></td> </tr><tr> <td>[4]</td> <td class="space">Lutz, E.; Fractional Langevin equation; Phys. 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