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典型文献
Highly efficient charging and discharging of three-level quantum batteries through shortcuts to adiabaticity
文献摘要:
Quantum batteries are energy storage devices that satisfy quantum mechanical principles.How to im-prove the battery's performance such as stored energy and power is a crucial element in the quantum battery.Here,we investigate the charging and discharging dynamics of a three-level counterdiabatic stimulated Raman adiabatic passage quantum battery via shortcuts to adiabaticity,which can com-pensate for undesired transitions to realize a fast adiabatic evolution through the application of an additional control field to an initial Hamiltonian.The scheme can significantly speed up the charg-ing and discharging processes of a three-level quantum battery and obtain more stored energy and higher power compared with the original stimulated Raman adiabatic passage.We explore the effect of both the amplitude and the delay time of driving fields on the performances of the quantum battery.Possible experimental implementation in superconducting circuit and nitrogen-vacancy center is also discussed.
文献关键词:
作者姓名:
Fu-Quan Dou;Yuan-Jin Wang;Jian-An Sun
作者机构:
College of Physics and Electronic Engineering,Northwest Normal University,Lanzhou 730070,China
文献出处:
引用格式:
[1]Fu-Quan Dou;Yuan-Jin Wang;Jian-An Sun-.Highly efficient charging and discharging of three-level quantum batteries through shortcuts to adiabaticity)[J].物理学前沿,2022(03):101-109
A类:
shortcuts,counterdiabatic,charg
B类:
Highly,efficient,discharging,three,level,quantum,batteries,through,adiabaticity,Quantum,energy,storage,devices,that,satisfy,mechanical,principles,How,prove,battery,such,stored,power,crucial,element,Here,investigate,dynamics,stimulated,Raman,passage,via,which,pensate,undesired,transitions,realize,fast,evolution,application,additional,control,initial,Hamiltonian,scheme,significantly,speed,processes,obtain,more,higher,compared,original,We,explore,effect,both,amplitude,delay,driving,fields,performances,Possible,experimental,implementation,superconducting,circuit,nitrogen,vacancy,center,also,discussed
AB值:
0.507772
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