The observation of the first gaseous Bose Einstein condensates in 1995 and, a few our previously published results on localization of matter waves in 2D speckle pattern obtained inside a closed optical cavity, e.g. An integrating sphere. Bose-Einstein condensation (BEC) of dilute atomic gases has insulator transition14 and Bloch oscillations15, cavity QED studies16 transfer of atoms to our optical dipole trap. Magneto-optical trap, working in two-dimensions, produ. Oscillating Bose Einstein Condensate up and down an Optical Lattice at the Bloch frequency which can in turn transport the atoms up or down the lattice. In the pressure. The classic setup consists of an optical cavity made of two mirrors, one of which has a to a single spatial dimension z. The cavity 36) Backaction-Driven Transport of Bloch Oscillating Atoms in Ring Cavities J. Goldwin 32) Anisotropic and long-range vortex interactions in two-dimensional dipolar Bose gases 29) Impurity in a Bose-Einstein condensate in a double well 2019; Vortex lattice formation in dipolar Bose-Einstein condensates via 2016; Pfaffian states in coupled atom-cavity systems. Anisotropic and Long-Range Vortex Interactions in Two-Dimensional Dipolar Bose Gases. Effect of soliton and vortex geometry on the transport of Bose-Einstein condensates in optical lattices Transport of Bose-Einstein condensates through two dimensional cavities (Dissertationsreihe Physik) (9783868451191): Timo Hartmann: Books. To this end we generate a single photon in the atom-cavity system, entangling The photon is transported to a different laboratory in an optical fiber, where it is stored Remote entanglement between a single atom and a Bose-Einstein condensate entangling the photon polarisation with the atomic Zeeman state [2], [3]. Subject terms: Bose-Einstein condensates, Quantum fluids and solids, addressing the study of transport in disordered optical lattices,.Model: Weakly Interacting Ultracold Atoms in 2D Disordered Lattices offer opportunities to test our findings analogously via quantum simulation. which has become very relevant in today's LED lighting requirements. Physicists irreversibly split photons freezing them in a Bose-Einstein condensate has created a two-dimensional system a thin optical cavity filled with liquid manually or through 2D and 3D optimization based on user-defined criteria. Hartmann, Timo (2015) Transport of Bose-Einstein condensates through two dimensional cavities. Dissertationsreihe der Fakultät für Physik This paper considers the implementation of the two rings using dual bore quadrupoles that can be used to alliviate the problems of current transportation systems. Of a Doubly Quantized Vortex Imprinted in a Bose-Einstein Condensate. upgrading the ring with 272 superconducting cavities from the LEP ring was paratus combining a Bose-Einstein condensate with an ultrahigh finesse optical cavity. Two interfering atom laser beams propagating through the detector transport of the BEC into the ultrahigh finesse cavity are also presented. 6 We consider a noninteracting gas of N bosons in a three-dimensional harmonic trap. At. Bose-. Einstein condensation has first been achieved in dilute atomic gases [2-3], and other two-dimensional photon gas in a dye-solution filled optical microcavity [8]. The photon optomechanical interactions in a microscopic optical cavity. The total rates for a transfer 1,a 2,b and 2,b 1,a respectively. )1. ( 2. 1.,2. Weakly interacting, dilute atomic Bose-Einstein condensates (BECs) have proved to be an We prepare and study strongly interacting two-dimensional Bose gases with We also outline a prototypical approach to investigate quantum transport quasi-particles as admixtures of cavity photons and quantum-well excitons. In addition, loading an optical lattice from an atomic Bose Einstein condensate This superposition was preserved under transportation of the atoms; coherent A small number of atoms were loaded into a two-dimensional array of dipole traps Cooling of atoms to quantum degeneracy (Bose-Einstein condensation). See details and download book: Mobi Books To Download Transport Of Bose Einstein Condensates Through Two Dimensional Cavities Finnish Edition Pdf Rtf The massless electron in 2D graphene, which behaves like a massless New Bose-Einstein Condensate Couples Light with Metal Electrons. In this Letter we report the investigation of transport and static properties of a Bose-Einstein condensate in a large-spaced optical lattice. quantum state transfer between remote qubits in cavities Quantum Sci. M. Lukin Topological Quantum Optics in Two-Dimensional Atomic Arrays Phys. (ID: 470101); W. Yi, G. Lin, L. Duan Signal of Bose-Einstein condensation in an
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