Single party heidelberg 2015

17 January 2019

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Interdisciplinary program single cell sequencing (sc-seq@dkfz)

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Interdisciplinary program single cell sequencing (sc-seq@dkfz) - Foreign policy The historical stance of the BJP towards , like the Jana Sangh, was based on an aggressive combined with economic protectionism.

In our experiments, we use to understand how complex quantum systems behave. In particular, we are interested in questions related to how strong interactions, reduced dimensionality 1D and 2D and finite system size affects the physical properties of a quantum system. More information on current research projects and the experimental setups can be found. Please check out the upcoming conference , which will be held at the International Academic Forum IWH Heidelberg from 19 to 21 March 2018. This collaboration between the STRUCTURES initiative, the Physics and the Kirchhoff Institute will bring together experts on quantum simulation, neuromorphic computing and machine learning. Mathias and Andrea recently finished their PhD theses. Mathias' thesis describes the observation of many-body pairing in the normal phase of a strongly interacting 2D Fermi gas in the BEC-BCS crossover using a spatially resolved RF spectroscopy method. Andrea's thesis investigates the preparation of strongly correlated few-particle fermi systems and the measurement of their momentum correlations with spin-resolved single-atom imaging. The theses are now available online: In our most recent publication, we prepared Heisenberg spin chains of up to four atoms in their antiferromagnetic ground state. Without the need for an external periodic potential, these spin chains are stabilized by strong repuslive interactions and a one-dimensiional trapping geometry. This work constitutes the first observation of quantum magnetism with ultracold fermions that exceeds nearest-neighbor correlations. The paper has been recently published in Physical Review Letters , also available at and was selected for an Editors' Suggestion. Ground-state systems of up to four atoms shown in green and blue are prepared in a strongly-elongated optical dipole trap red in which they can move in one dimension only. When the atoms do not interact, they can move freely in the trap top picture and they have no discernible order. When repulsive interactions between the atoms become strong bottom picture , they can not pass each other anymore and independently arrange themselves in an antiferromagnetic spin chain. In our recent experiments, we observed the Berezinskii-Kosterlitz-Thouless BKT phase transition in a 2D Fermi gas. We have measured, for the first time, the non-local correlations of a many-body system. We saw the onset of power-law behavior at low temperatures. More interestingly, we measured the scaling exponents and observed that the inhomogeneity of the system leads to a change of the universal critical exponents predicted by the BKT Theory. The results of this work have been recently published in also available at. The paper was also selected for an Editors' Suggestion! Image: An artist's impression of the complex phase of a two-dimensional superfluid which is described by the Berezinskii-Kosterlitz-Thouless BKT theory. The two most prominent features of BKT theory are spatial phase fluctuations and bound pairs of topological vortices. The phase fluctuations have a peculiar spectrum which leads to algebraically decaying correlations, which are measured in this work for a fermionic superlfuid. Above a critical temperature the vortex pairs unbind and the individual vortices disorder the system such that superfluidity is lost.
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