Basis-independent coherence in noninertial frames.
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| Title: | Basis-independent coherence in noninertial frames. |
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| Authors: | Du, Ming-Ming1 (AUTHOR) mingmingdu@njupt.edu.cn, Fan, Yi-Hao1 (AUTHOR), Li, Hong-Wei1 (AUTHOR), Shen, Shu-Ting1 (AUTHOR), Yan, Xiao-Jing2 (AUTHOR), Li, Xi-Yun2 (AUTHOR), Zhong, Wei3 (AUTHOR), Sheng, Yu-Bo1,3 (AUTHOR), Zhou, Lan2 (AUTHOR) zhoul@njupt.edu.cn |
| Source: | European Physical Journal C -- Particles & Fields. Aug2025, Vol. 85 Issue 8, p1-5. 5p. |
| Subjects: | Quantum coherence, Unruh effect, Quantum field theory, Frames of reference (Relativity), Coherence (Physics) |
| Abstract: | We investigate the behavior of basis-independent quantum coherence between two modes of a free Dirac field as observed by relatively accelerated observers. Our findings reveal three key results: (i) the basis-independent coherence between modes A and B I decreases with increasing acceleration but remains finite even in the limit of infinite acceleration; (ii) at zero acceleration, the coherence between modes A and B II is nonzero-contrasting with the behavior of basis-dependent coherence, which typically vanishes in this case; and (iii) the basis-independent coherence between modes B I and B II remains constant regardless of acceleration, exhibiting a freezing phenomenon. These results demonstrate the intrinsic robustness of basis-independent coherence under Unruh effects. [ABSTRACT FROM AUTHOR] |
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| Database: | Engineering Source |
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| Abstract: | We investigate the behavior of basis-independent quantum coherence between two modes of a free Dirac field as observed by relatively accelerated observers. Our findings reveal three key results: (i) the basis-independent coherence between modes A and B I decreases with increasing acceleration but remains finite even in the limit of infinite acceleration; (ii) at zero acceleration, the coherence between modes A and B II is nonzero-contrasting with the behavior of basis-dependent coherence, which typically vanishes in this case; and (iii) the basis-independent coherence between modes B I and B II remains constant regardless of acceleration, exhibiting a freezing phenomenon. These results demonstrate the intrinsic robustness of basis-independent coherence under Unruh effects. [ABSTRACT FROM AUTHOR] |
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| ISSN: | 14346044 |
| DOI: | 10.1140/epjc/s10052-025-14588-x |