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  • Ana Hudomal
    MSc in Physics University of Belgrade Faculty of Physics 2010 2014 BSc in Physics University of Belgrade Faculty of Physics Working experience 2014 2015 Teaching Assistant Quantum Theoretical Physics University of Belgrade Faculty of Physics Scholarships 2013 2015 Dositeja fellowship Serbian Ministry of Youth and Sports 2011 2013 Fellowship by the city of Belgrade 2007 2011 National Foundation for Development of Science and Art Youth News 12 February 2016 SCL

    Original URL path: http://www.scl.rs/scl-members/members/28-scl-members/members/986-ana_hudomal (2016-02-10)
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  • Iva Bacic
    November 2015 Thesis advisor Igor Franovic Research interests Nonlinear dynamical systems Education 2014 2015 MSc in Physics University of Belgrade Faculty of Physics 2010 2014 BSc in Physics University of Belgrade Faculty of Physics Scholarships 2012 2014 Fellowship by the Serbian Ministry of Education Science and Technological Development MSc Thesis News 12 February 2016 SCL Seminar by Jelena Smiljanic 12 January 2016 In memoriam Nikola Buric 28 December 2015 SCL

    Original URL path: http://www.scl.rs/scl-members/members/28-scl-members/members/987-iva_bacic (2016-02-10)
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  • I Bacic Inner Shell Action Spectroscopy of Trapped Supstance P Peptide Ions and Their Nanosolvated Complexes MSc Thesis 2015 University of Belgrade Faculty of Physics Thesis advisor Aleksandar Milosavljevic

    Original URL path: http://www.scl.rs/publications/selected.php?who=568 (2016-02-10)
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  • Petar Jovanovic
    to view it Personal Details Date of birth May 19 1986 Place of birth Belgrade Serbia Education 2005 2010 Dipl Ing in Computer Science School of Computing Union University Research interests Machine Learning Natural Language Processing Robotics News 12 February 2016 SCL Seminar by Jelena Smiljanic 12 January 2016 In memoriam Nikola Buric 28 December 2015 SCL Seminar by Milos Radonjic 25 December 2015 SCL Seminar by Milan Radonjic 18

    Original URL path: http://www.scl.rs/scl-members/members/40-temporary/temporary/814-petar-jovanovic (2016-02-10)
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  • Efficient calculation of path integrals with applications to ultra-cold quantum gases
    years we have obtained new analytical insight about these properties and build it into more efficient algorithms Our principal focus in the next period will be to apply the method to a wide array of relevant models in condensed matter physics and quantum field theory To this end we will study ultracold Bose systems in the presence of weak and strong disorder It is known that the introduction of a stochastically disordered component of the trapping potential can lead to three different phases the expected gas and superfluid phase and a novel Bose glass phase The latter two appear due to a macroscopic occupation of the ground state which leads either to a global Bose Einstein condensate or to a set of local ones in the minima of the disorder potential We will compare analytical perturbative and non perturbative and numerical Gross Pitaveskii approaches in the weak disorder regime in order to gain new insights and address the problem of strong disorder where the emergence of a quantum phase transition from a superfluid to a Bose glass phase is expected Codes developed and used in these investigations SPEEDUP News 12 February 2016 SCL Seminar by Jelena Smiljanic 12 January 2016

    Original URL path: http://www.scl.rs/scl-research/research-topics?id=320:path-integrals&catid=5 (2016-02-10)
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  • Modeling and simulations of granular materials
    formation In order to elucidate qualitative features of coalescence dynamics we will develop Molecular Dynamics simulation of charged spheres in applied electric field This will enable us to understand under which conditions Coulomb forces have an impact concerning the structure of granular matter or the morphology of deposited layer Further we will investigate the process of coating micrometer particles by small nanoparticles with the aim of improving the flow properties

    Original URL path: http://www.scl.rs/scl-research/research-topics?id=322:granular-materials&catid=5 (2016-02-10)
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  • Study of strongly correlated quantum systems
    and clarifying the role of edge spin states Also we will study transport and thermodynamic properties of strongly correlated materials e g heavy fermions charge transfer organic salts and transition metal oxides within dynamical mean field theory DMFT combined with DFT band structure calculations We will use the continuous time quantum Monte Carlo and iterative perturbation theory to solve the effective Anderson impurity model from DMFT equations and examine the

    Original URL path: http://www.scl.rs/scl-research/research-topics?id=323:planetary-system-formation&catid=5 (2016-02-10)
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  • Modeling of information processing in complex classical and quantum systems
    in networks consisting of finite state classical or quantum objects We want to understand the types of bifurcations introduced by coupled influence of noise and interaction and or control time delay in systems of excitable dynamical units like neurons or qubits The stability of attractors will be investigated using the generalized Lyapunov method for the stochastic delay differential equations Analytical results will be compared with extensive numerical computations in various

    Original URL path: http://www.scl.rs/scl-research/research-topics?id=325:dynamics-of-networks&catid=5 (2016-02-10)
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