Cite this article:
Yu-Wei Xiao, Yue Ji, Jia-Yi Wei, Jian-Dong Zhang, Li-Li Hou. Phase sensitivity of a lossy truncated SU(1,1) interferometer with double-port homodyne detectionJ. Chin. Phys. B, 2026, 35(1): 014205.
| Yu-Wei Xiao, Yue Ji, Jia-Yi Wei, Jian-Dong Zhang, Li-Li Hou. Phase sensitivity of a lossy truncated SU(1,1) interferometer with double-port homodyne detectionJ. Chin. Phys. B, 2026, 35(1): 014205. |
Phase sensitivity of a lossy truncated SU(1,1) interferometer with double-port homodyne detection
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Abstract
We theoretically investigate the phase sensitivity of a truncated SU(1,1) interferometer fed with a two-mode coherent state and employing double-port homodyne detection. On the one hand, we analytically demonstrate that the two-mode coherent state provides better phase sensitivity than the single-mode coherent state. In addition, we show that the double-port homodyne detection is a quasi-optimal measurement. For a bright coherent-state input, the sensitivity of this scheme saturates the phase-sensitivity bound determined by the quantum Fisher information. On the other hand, we quantitatively illustrate the advantage of double-port homodyne detection over the single-port scheme under ideal conditions and in the presence of photon loss, respectively. Furthermore, our analysis indicates that the scheme we propose is robust against photon loss. -
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