Theory of cavity qed with 2d atomic arrays
Webb1 apr. 2024 · The general principle of QEC is to encode logical quantum information redundantly in a large Hilbert space with certain symmetry properties, which can be used to detect errors. In particular, logical code states are designed such that they can be mapped onto orthogonal subspaces under distinct errors. Webbis to our knowledge the rst attempt at implementing the emerging coupled-cavities QED paradigm. The device we propose possesses a degree of control, exibility and tuning un-matched in other suggested implementations: The atoms can be manipulated inside the cavity by auxiliary lasers and the cavity-cavity coupling rate as well as the atom-cavity
Theory of cavity qed with 2d atomic arrays
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WebbSuch arrays have been shown to act as an efficient mirror [1, 2], as demonstrated recently in experiments [3]. We are interested in whether such setup can be used to do cavity … WebbAbstract Recent experimental advances in the field of cavity quantum electrodynamics (QED) have opened new possibilities for control of atom-photon interactions. A laser with "one and the same atom" demonstrates the theory of laser operation pressed to its conceptual limit.
WebbTheory of cavity QED with 2D atomic arrays - CORE Reader Webb9 maj 2005 · ABSTRACT Recent experimental advances in the field of cavity quantum electrodynamics (QED) have opened new possibilities for control of atom‐photon interactions. A laser with “one and the same atom” demonstrates the theory of laser operation pressed to its conceptual limit.
WebbThe goal of this paper is to provide a general theoreti- cal framework for the description of cavity QED with or- dered 2D atomic arrays. Such a formalism has to account for … Webb16 jan. 2024 · The paradigm of cavity QED is a two-level emitter interacting with a high-quality factor single-mode optical resonator. The hybridization of the emitter and photon wave functions mandates large vacuum Rabi frequencies and long coherence times; features that so far have been successfully realized with trapped cold atoms and ions, …
WebbH10.00004: Achieving the Continuum Limit of (1+1)D Lattice Quantum Electrodynamics using Rydberg Tweezer Arrays. Conall V McCabe, Fabian Grusdt. Advances in cold-atom simulators has allowed the implemen-tation of a Z 2 lattice gauge theory in optical lattices where phenomena inherent of Quantum Electrodynamics (QED) can readily be observed.
WebbTheory of cavity QED with 2D atomic arrays Shahmoon E., Wild D. S., Lukin M. D. & Yelin S. F. (2024) arXiv. arXiv:2006. Abstract Arxiv: 2006.01972 Quantum metasurfaces with … highcharts canvasWebbOrganizers Local Organizers: • Michael Fleischhauer (Chair): University of Kaiserslautern, Germany • Thomas Gasenzer: University of Heidelberg, Germany • Herwig Ott: University of Kaiserslautern, Germany • Axel Pelster: University of Kaiserslautern, Germany International Advisory Committee: • Immanuel Bloch: Max-Planck Institute for Quantum Optics, … highcharts candlestick real timeWebbIn cavity quantum electrodynamics (cavity QED) systems, the realization of strong coupling between light and atoms plays a critical role in the study of quantum optics and … how far is thackerville ok from oklahoma cityWebb5 sep. 2012 · In this chapter, we discuss two more experimental realizations of quantum optical phenomena, namely the interaction of an effective two-level atom with a quantized electromagnetic field in a high Q microwave cavity, the subject usually referred to as cavity QED, or sometimes CQED, and in the quantized motion of a trapped ion. highcharts bullet chartWebb7 feb. 2024 · The two-dimensional (2D) topological insulator is a quantum spin Hall insulator, which is a close cousin of the integer quantum Hall state. A three-dimensional (3D) topological insulator supports novel spin-polarized 2D Dirac fermions on its surface. highcharts buttonsWebbIn the term “cavity QED,” “cavity” refers to an optical or microwave resonator and “QED” implies the interaction of some material system (usually atomic) with the electromagnetic field (photons) inside the cavity. Enclosure in a high-quality cavity can largely insulate an atom–photon system from decohering interactions with its ... how far is thackerville ok from shreveport laWebb14 juli 2024 · We report a high-finesse bow-tie cavity designed for atomic physics experiments with Rydberg atom arrays. The cavity has a finesse of 51,000 and a waist of 7.1 μm at the cesium D2 line (852 nm). With these parameters, the cavity is expected to induce strong coupling between a single atom and a single photon, corresponding to a … highcharts bubble