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Main Authors: Su, Yuguo, Liang, Hongbin, Wang, Xiaoguang
Format: Preprint
Published: 2020
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Online Access:https://arxiv.org/abs/2006.06342
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author Su, Yuguo
Liang, Hongbin
Wang, Xiaoguang
author_facet Su, Yuguo
Liang, Hongbin
Wang, Xiaoguang
contents The Lee-Yang zeros are one-to-one mapping to zeros in the coherence of a probe spin coupled to a many-body system. Here, we study the spin squeezing under two different types of Lee-Yang dephasing channels in which the partition functions vanish at Lee-Yang zeros. Under the first type of the channels in which probes are coupled to their own bath, we find that the performance of spin squeezing is improved and its maximum only depends on the initial state. Moreover, the centers of all the concurrence vanishing domains are corresponding to the Lee-Yang zeros. Under the second type of the channels in which probes are coupled to one bath together, the performance of spin squeezing is not improved, however, the concurrence shares almost the same properties under both channels. These results provide new experimental possibilities in many-body physics and extend a new perspective of the relationship between the entanglement and spin squeezing in probes-bath systems.
format Preprint
id arxiv_https___arxiv_org_abs_2006_06342
institution arXiv
publishDate 2020
record_format arxiv
spellingShingle Spin squeezing and concurrence under Lee-Yang dephasing channels
Su, Yuguo
Liang, Hongbin
Wang, Xiaoguang
Quantum Physics
The Lee-Yang zeros are one-to-one mapping to zeros in the coherence of a probe spin coupled to a many-body system. Here, we study the spin squeezing under two different types of Lee-Yang dephasing channels in which the partition functions vanish at Lee-Yang zeros. Under the first type of the channels in which probes are coupled to their own bath, we find that the performance of spin squeezing is improved and its maximum only depends on the initial state. Moreover, the centers of all the concurrence vanishing domains are corresponding to the Lee-Yang zeros. Under the second type of the channels in which probes are coupled to one bath together, the performance of spin squeezing is not improved, however, the concurrence shares almost the same properties under both channels. These results provide new experimental possibilities in many-body physics and extend a new perspective of the relationship between the entanglement and spin squeezing in probes-bath systems.
title Spin squeezing and concurrence under Lee-Yang dephasing channels
topic Quantum Physics
url https://arxiv.org/abs/2006.06342