Konwersatorium im. Leopolda Infelda
2006/2007 | 2007/2008 | 2008/2009 | 2009/2010 | 2010/2011 | 2011/2012 | 2012/2013 | 2013/2014 | 2014/2015 | 2015/2016 | 2016/2017 | 2017/2018
60 lat Instytutów Fizyki Doświadczalnej i Fizyki Teoretycznej UW
Szanowni Państwo,
W maju 1952 roku utworzone zostały w Uniwersytecie Warszawskim Instytuty: Fizyki Doświadczalnej i Fizyki Teoretycznej.
W poniedziałek 21 maja 2012 o 16:30 w SDD odbędzie się konwersatorium, podczas którego swoimi refleksjami podzielą się profesorowie Wojciech Królikowski i Andrzej Kajetan Wróblewski. Po konwersatorium zapraszamy na poczęstunek w salach SDT i SST.
Tomasz Matulewicz
Marek Napiórkowski
Cold Atoms Physics
Majorana fermions in superconductors
Majorana fermions (particles which are their own antiparticle) canbe constructed in condensed matter context out of electron and holeexcitations. The necessary ingredients are the presence of a superconductor to hide the charge difference and a Berry phase toeliminate the energy of zero-point motion.
I will discuss a particular mechanism for the formation of Majorana bound states. An atomic-scale electrostatic line defect in a p-wavesuperconductor can have a pair of Majorana bound states at the end points. This mechanism explains also the appearance of a thermal metal in lattice models of p-wave superconductors. The transition to the metallic phase of deconfined Majorana states takes place as the electrostatic disorder is increased.
The contribution ofeconophysics to the modeling of financial markets
Since more than 20 years, physicists have been investigating economic and financial systems with tools and concepts from statistical and condensed matter physics [1]. Many of these studies have been devoted to studies focusing on financial markets. In this talk I will first briefly discuss some stylized facts discovered or investigated in details by econophysicists and then I will present an overview of some results obtained by my research group. Specifically, I will discuss some approaches used to describe the hierarchical multivariate nature of the dynamics of stock returns of a portfolio traded in a financial market [2]. Furthermore, I will discuss the clusters of individual investors detected by analyzing their empirical records of trading activity in a financial market [3].
[1] Rosario N Mantegna and János Kertész, Focus on Statistical Physics Modeling in Economics and Finance, New J. Phys. 13, 025011 (2011)
[2] Michele Tumminello, Fabrizio Lillo, Rosario N. Mantegna, Correlation, hierarchies, and networks in financial markets, Journal of Economic Behavior & Organization, 75, 40-58 (2010)
[3] Michele Tumminello, Fabrizio Lillo, Jyrki Piilo and Rosario N Mantegna, Identification of clusters of investors from their real trading activity in a financial market, New J. Phys. 14, 013041 (2012)
Correlated electron systems: total correlations and their manifestations
A mini review on correlated electron systems and the dynamical mean-field theory is presented. We show how to quantify correlations in many-body quantum systems. Examples of correlation effects in pure and disordered systems is discussed.
K. Byczuk, J. Kuneš, W. Hofstetter, and D. Vollhardt, Phys. Rev. Lett. 108, 087004 (2012)
K. Byczuk, W. Hofstetter, and D. Vollhardt, Phys. Rev. Lett. 102, 146403 (2009)
K. Byczuk, M. Kollar, K. Held, Y.-F. Yang, I. A. Nekrasov, Th. Pruschke, D. Vollhardt, Nature Phys. 3, 168 (2007)
New scales in fundamental physics: supersymmetry and flavour
Uncertainty relation for photons
Frame quantization or exploring the world like a starfish
Sea stars orient themselves in the plane with five arms. The latter, when suitably weighted, form an overcomplete frame which solves the identity, and so allow the echinoderm to have a non-commutative point of view (with 2_2 matrices) of any function on a set of 5 elements. Hence, sea stars arms proceed with a frame quantization of C5.
Frame quantization or Coherent state(s) quantization are generic phrases for naming a certain point of view in analyzing functions on a set X, e.g. the fivefold orientations for sea stars, equipped with a measure. The approach matches what physicists understand by quantization when the observed measure space X is the phase space of a mechanical system. It matches also well established approaches by signal analysts, like wavelet analysis. The set X can be finite, countably infinite, or uncountably infinite. The approach is generically simple, of Hilbertian essence, and always the same: one builds a family C of vectors jxi (the frame vectors or "coherent states) in a Hilbert space H , which are labelled by elements of X and which resolve the unity operator inH . This is the departure point for analyzing the original set and functions living on it from the point of view of the frame (in its true sense) C.
We end in general with a non-commutative algebra of operators inH. Changing the frame family C produces another quantization, another point of view, possibly equivalent to the previous one, possibly not. Starting from the sea star orientations, various examples of such explorations will be presented.
References
[1] J.P. Gazeau 2009 Coherent States in Quantum Physics, Wiley-VCH
Unification, Supersymmetry and LHC
Pomiędzy nadprzewodnictwem a kondensacją Bosego-Einsteina
Przedstawię niektóre egzotyczne aspekty nadprzewodnictwa w gazie atomów w reżimie unitarnym. Z uwagi na swój uniwersalny charakter gaz fermionów w reżimie unitarnym jest bardzo wdzięcznym obiektem badań teoretycznych, stanowiąc najprostszy przykład silnie skorelowanego układu wielu fermionów i dzieląc wiele wspólnych cech z takimi układami fizycznymi jak: materia neutronowa, plazma kwarkowo-gluonowa, czy nadprzewodniki wysokotemperaturowe.
Omówię podstawowe własności termodynamiczne i hydrodynamiczne tego układu oraz przewidywania teoretyczne dotyczące równania stanu, temperatury krytycznej i powstawania "fazy" pseudoszczeliny. Porównam przewidywania teoretyczne z ostatnio otrzymanymi wynikami eksperymentów. Zaprezentuje również symulacje dynamiki wirów kwantowych w gazie unitarnym, wymagające użycia najpotężniejszych superkomputerów i rzucające światlo na mechanizm powstawania kwantowej turbulencji.