Read our Editor's Choice Article "Measurement-Based Quantum Thermal Machines with Feedback Control"

Read our Editor's Choice Article "Measurement-Based Quantum Thermal Machines with Feedback Control"

Authors: Bibek Bhandari , Robert Czupryniak , Paolo Andrea Erdman and Andrew N. Jordan

Abstract: We investigated coupled-qubit-based thermal machines powered by quantum measurements and feedback. We considered two different versions of the machine: (1) a quantum Maxwell’s demon, where the coupled-qubit system is connected to a detachable single shared bath, and (2) a measurement-assisted refrigerator, where the coupled-qubit system is in contact with a hot and cold bath. In the quantum Maxwell’s demon case, we discuss both discrete and continuous measurements. We found that the power output from a single qubit-based device can be improved by coupling it to the second qubit. We further found that the simultaneous measurement of both qubits can produce higher net heat extraction compared to two setups operated in parallel where only single-qubit measurements are performed. In the refrigerator case, we used continuous measurement and unitary operations to power the coupled-qubit-based refrigerator. We found that the cooling power of a refrigerator operated with swap operations can be enhanced by performing suitable measurements.

Read full article at: https://www.mdpi.com/1099-4300/25/2/204

More info about Editor's Choice Articles: https://www.mdpi.com/journal/entropy/editors_choice


要查看或添加评论,请登录

Entropy MDPI的更多文章

社区洞察

其他会员也浏览了