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Effect of system-reservoir correlations on temperature estimation

Effect of system–reservoir correlations on temperature estimation
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摘要 In many previous temperature estimation schemes,the temperature of a sample is directly read out from the final steady state of a quantum probe,which i5 eoupled to the sample.However,in these studies,information of eorrelations between system(the probe) and reservoir(the sample) is usually eliminated,leading the steady state of the probe is a canonical equilibrium state with respect solely to system’s Hamiltonian.To explore the influence of system-reservoir correlations on the estimation precision,we investigate the equilibration dynamics of a spin interacting with a finite temperature bosonic reservoir.By incorporating an intermediate harmonic oscillator or a collective coordinate into the spin,the system-reservoir correlations can be correspondingly encoded in a Gibbs state of an effective Hamilton,which is size consistent with the original bare spin.Extracting information of temperature from this corrected steady state,we find the effect of the systemreservoir correlations on the estimation precision is highly sensitive to the details of the spectral density function of the measured reservoir. In many previous temperature estimation schemes,the temperature of a sample is directly read out from the final steady state of a quantum probe,which is coupled to the sample.However,in these studies,information of correlations between system(the probe)and reservoir(the sample)is usually eliminated,leading the steady state of the probe is a canonical equilibrium state with respect solely to system's Hamiltonian.To explore the influence of system-reservoir correlations on the estimation precision,we investigate the equilibration dynamics of a spin interacting with a finite temperature bosonic reservoir.By incorporating an intermediate harmonic oscillator or a collective coordinate into the spin,the system-reservoir correlations can be correspondingly encoded in a Gibbs state of an effective Hamilton,which is size consistent with the original bare spin.Extracting information of temperature from this corrected steady state,we find the effect of the system-reservoir correlations on the estimation precision is highly sensitive to the details of the spectral density function of the measured reservoir.
作者 Wen-Li Zhu Wei Wu Hong-Gang Luo 朱雯丽;吴威;罗洪刚(School of Physical Science and Technology&Key Laboratory for Magnetism and Magnetic Materials of the Ministry of Education,Lanzhou University,Lanzhou 730000,China;Beijing Computational Science Research Center,Beijing 100193,China)
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2020年第2期142-147,共6页 中国物理B(英文版)
基金 Project supported by the National Natural Science Foundation of China(Grants Nos.11704025,11674139,and 11834005).
关键词 quantum FISHER information spin-boson model system-reservoir CORRELATIONS temperature sensing quantum Fisher information spin-boson model system–reservoir correlations temperature sensing
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