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Measuring gravitational effect of superintense laser by spin-squeezed Bose-Einstein condensates interferometer
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作者 Eng Boon Ng C.H.Raymond Ooi 《Chinese Physics B》 SCIE EI CAS CSCD 2022年第5期265-273,共9页
We consider an extremely intense laser,enclosed by an atom interferometer.The gravitational potential generated from the high-intensity laser is solved from the Einstein field equation under the Newtonian limit.We com... We consider an extremely intense laser,enclosed by an atom interferometer.The gravitational potential generated from the high-intensity laser is solved from the Einstein field equation under the Newtonian limit.We compute the strength of the gravitational force and study the feasibility of measuring the force by the atom interferometer.The intense laser field from the laser pulse can induce a phase change in the interferometer with Bose-Einstein condensates.We push up the sensitivity limit of the interferometer with Bose-Einstein condensates by spin-squeezing effect and determine the sensitivity gap for measuring the gravitational effect from intense laser by atom interferometer. 展开更多
关键词 intense laser field atom interferometer Bose-Einstein condensates spin-squeezing
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Beating standard quantum limit via two-axis magnetic susceptibility measurement
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作者 王正安 彭益 +1 位作者 俞大鹏 范桁 《Chinese Physics B》 SCIE EI CAS CSCD 2022年第4期170-174,共5页
We report a metrology scheme which measures the magnetic susceptibility of an atomic spin ensemble along the x and z directions and produces parameter estimation with precision beating the standard quantum limit.The a... We report a metrology scheme which measures the magnetic susceptibility of an atomic spin ensemble along the x and z directions and produces parameter estimation with precision beating the standard quantum limit.The atomic ensemble is initialized via one-axis spin squeezing with optimized squeezing time and parameterΦ(to be estimated)assumed as uniformly distributed between 0 and 2πwhile fixed in each estimation.One estimation ofΦcan be produced with every two magnetic susceptibility data measured along the two axes respectively,which has an imprecision scaling(1.43±0.02)/N^(0.687±0.003)with respect to the number N of the atomic spins.The measurement scheme is easy to implement and is robust against the measurement fluctuation caused by environment noise and measurement defects. 展开更多
关键词 quantum metrology spin-squeezing standard quantum limit FLUCTUATION
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