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Scalar Aharonov–Bohm Phase in Ramsey Atom Interferometry under Time-Varying Potential

机译:时变电势下Ramsey原子干涉术中的标量Aharonov–Bohm相位

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In a Ramsey atom interferometer excited by two electromagnetic fields, if atoms are under a time-varying scalar potential during the interrogation time, the phase of the Ramsey fringes shifts owing to the scalar Aharonov–Bohm effect. The phase shift was precisely examined using a Ramsey atom interferometer with a two-photon Raman transition under the second-order Zeeman potential, and a formula for the phase shift was derived. Using the derived formula, the frequency shift due to the scalar Aharonov–Bohm effect in the frequency standards utilizing the Ramsey atom interferometer was discussed.
机译:在被两个电磁场激发的拉姆西原子干涉仪中,如果在询问时间内原子处于时变标量电势下,则由于标量Aharonov-Bohm效应,拉姆齐条纹的相位发生了变化。使用具有二阶塞曼势能的双光子拉曼跃迁的拉姆齐原子干涉仪精确检查了相移,并推导了相移公式。使用推导的公式,讨论了使用Ramsey原子干涉仪的频率标准中标量Aharonov–Bohm效应引起的频移。

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