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Gauge Fields in Ultracold Bipartite Atoms

並列摘要


The effects of entanglement and spin-spin collisions on the gauge fields in ultracold atoms are presented in this paper. Two gauge fields are calculated and discussed. One of the fields comes from space dependent spin-spin collisions in ultracold atoms, while the other results from the usual Born-Oppenheimer method, which separates the center-of-mass motion from the relative motion in the two-body problem. Adiabatic conditions that lead to the key results of this paper are also presented and discussed. Entanglement shared between the two atoms is shown to affect the atomic motion. In the presence of entanglement, the additional scalar potential disappears; this is different from the case of atoms in separable states.

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Chang, I. C. (2014). 簡易製備銅及氧化銅奈米材料應用於能源儲存元件 [doctoral dissertation, National Tsing Hua University]. Airiti Library. https://doi.org/10.6843/NTHU.2014.00349
Huang, C. W. (2014). 金屬氧化物奈米線異質結構:動態反應及其電阻轉換特性研究 [doctoral dissertation, National Chiao Tung University]. Airiti Library. https://doi.org/10.6842/NCTU.2014.00315
Chen, C. S. (2011). 沉積在金屬氧化物載體上之鉑金屬奈米粒對甲醇氧化反應之電催化特性研究 [doctoral dissertation, National Chiao Tung University]. Airiti Library. https://doi.org/10.6842/NCTU.2011.00686
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