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Thermal atoms are an attractive platform for quantum information. A typical atomic vapor cell contains billions of identical quantum systems, an extremely large and easily accessible resource. However, harnessing this resource for quantum information is challenging due to the broad velocity distribution of thermal vapors. In this work we describe how we use atomic beams and velocity selection to observe atoms one-by-one, and to create a basic building block of a "bottom-up" approach to quantum information using thermal atoms.
Chandra Raman
"Quantum information with thermal atoms on chip", Proc. SPIE PC12911, Quantum Computing, Communication, and Simulation IV, PC129110D (13 March 2024); https://doi.org/10.1117/12.3009352
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Chandra Raman, "Quantum information with thermal atoms on chip," Proc. SPIE PC12911, Quantum Computing, Communication, and Simulation IV, PC129110D (13 March 2024); https://doi.org/10.1117/12.3009352