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                          petak, 25. studenog 2022., u 11:00 sati</span></b></strong><br>
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                                style="font-size:21.3333px"><b>Dynamically
                                  screened collective activities in
                                  layered and two-dimensional materials</b></span></font><span
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serif;font-size:16px;font-style:normal;letter-spacing:normal;text-align:center;text-indent:0px;text-transform:none;white-space:normal;word-spacing:0px;background-color:#ffffff"><span
style="font-size:14pt;font-family:'century gothic' , sans-serif"
                                      lang="EN-GB">Dr.  sc. Dino Novko</span></b></b></span></span></div>
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style="font-size:11pt;font-family:'century gothic' , sans-serif"
                                lang="EN-GB">Institut za fiziku, Zagreb</span></b><b><span
style="font-size:11pt;font-family:'century gothic' , sans-serif"
                                lang="EN-GB"> </span></b></div>
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                                    style="font-size:14px">In many-body
                                    perturbation theory, collective
                                    excitations play a predominant role
                                    in understanding structural,
                                    electronic, and vibrational
                                    properties of matter. For instance,
                                    phonons, collective modes of ions,
                                    are instrumental for electrical
                                    resistivity, band gap
                                    renormalizations, thermal
                                    conductivity, structural phase
                                    transitions, charge density waves,
                                    and superconductivity. Plas-mons,
                                    collective electronic excitations,
                                    are crucial in comprehending optical
                                    properties, but can also compete and
                                    interact with phonons and,
                                    therefore, influence ordered
                                    phases.  In this talk I will present
                                    an overview of my work addressing
                                    these collective excitations in real
                                    materials, from the
                                    density-functional-theory point of
                                    view. A particular emphasis will be
                                    on the dynamical (nonadiabatic)
                                    effects of phonons and
                                    electron-phonon coupling, role of
                                    dynamical screening, plasmon-phonon
                                    coupling, dissipative effects, and
                                    ultrafast non-equilibrium dynamics.
                                    These dynamical aspects are
                                    investigated in a number of bulk and
                                    quasi-two-dimensional materials
                                    relevant in condensed matter physics
                                    and material science, such as
                                    graphene, transition metal
                                    dichalcogenides, magnesium diboride,
                                    and metal surfaces. In order to
                                    underline the developed
                                    methodologies and the outcome of my
                                    theoretical studies, I will single
                                    out the results of three projects,
                                    namely, transient vibrational
                                    relaxation of ordered molecules on
                                    metal surfaces, nonadiabatic
                                    renormalization of electron-phonon
                                    coupling in conventional
                                    superconductors, and ultrafast
                                    dynamics of Dirac plasmon in
                                    graphene. Finally, the presentation
                                    will also contain my future
                                    scientific and funding plans.</span><br>
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                                <p style="text-align:justify;margin:0px"><span
style="text-align:left;font-size:14px">Nastupno predavanje će se održati
                                  </span><span style="color:rgb( 0 , 0 ,
                                    0 );font-family:'arial' ,
                                    'helvetica' ,
                                    sans-serif;font-size:14px">u velikoj
                                    predavaonici u 3. krilu Instituta.</span></p>
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sans-serif;font-size:12pt;text-align:justify;margin:0px"><span
                                    style="font-size:14px">Predavanje
                                    ćete moći pratiti i putem Zoom-a:</span></p>
                                <p style="text-align:justify;margin:0px"><span
                                    style="font-size:14px"><a
href="https://us06web.zoom.us/j/89982844098?pwd=RHlkSHY1djlieThuSTVUajdZNTEzZz09"
                                      rel="nofollow noopener noreferrer
                                      nofollow noopener noreferrer"
                                      target="_blank"
                                      class="moz-txt-link-freetext">https://us06web.zoom.us/j/89982844098?pwd=RHlkSHY1djlieThuSTVUajdZNTEzZz09</a></span></p>
                                <p style="text-align:justify;margin:0px"><span
                                    style="font-size:14px">Meeting ID:
                                    899 8284 4098</span></p>
                                <p style="text-align:justify;margin:0px"></p>
                                <p style="text-align:justify;margin:0px"><span
                                    style="font-size:14px">Passcode:
                                    730111</span></p>
                                <br>
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                                  <div>Predsjednik Znanstvenog vijeća
                                    Instituta za fiziku</div>
                                  <div>dr. sc. Damir Starešinić<br>
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