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Measurement of the Wigner Function via Atomic Beam Deflection

机译:通过原子束偏转测量Wigner功能

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We shown that the Wigner function of a cavity field can be reconstructed by knowing the position distribution of resonant two level atoms on detection screen. The atoms are deflected during their passage through the quantized cavity field, we calculate the momentum distribution of the deflected atoms by taking the Fourier transform of position distribution and show that how the Winger function can be reconstructed by having the knowledge of momentum distribution. In the proposed method, the Wigner function of the coherent state and Schrodinger cat state is recovered in a straightforward manner, without much mathematical manipulation of the experimental data.
机译:我们表明,可以通过了解在检测屏幕上的谐振两个水平原子的位置分布来重建腔场的Wigner函数。原子在通过量化腔场的通道期间偏转,我们通过采取位置分布的傅里叶变换来计算偏转原子的动量分布,并表明如何通过具有动量分布的知识来重建文本功能。在所提出的方法中,以直接的方式回收相干状态和Schrodinger猫状态的Wigner函数,而实验数据的数学操纵。

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