Zhang Chi, Yu Phelan, Jadbabaie Arian, Hutzler Nicholas R
California Institute of Technology, Division of Physics, Mathematics, and Astronomy, Pasadena, California 91125, USA.
Phys Rev Lett. 2023 Nov 10;131(19):193602. doi: 10.1103/PhysRevLett.131.193602.
We propose a method to measure time-reversal symmetry violation in molecules that overcomes the standard quantum limit while leveraging decoherence-free subspaces to mitigate sensitivity to classical noise. The protocol does not require an external electric field, and the entangled states have no first-order sensitivity to static electromagnetic fields as they involve superpositions with zero average lab-frame projection of spins and dipoles. This protocol can be applied with trapped neutral or ionic species, and can be implemented using methods that have been demonstrated experimentally.
我们提出了一种测量分子中时间反演对称性破缺的方法,该方法克服了标准量子极限,同时利用无退相干子空间来降低对经典噪声的敏感度。该方案不需要外部电场,并且纠缠态对静态电磁场没有一阶敏感度,因为它们涉及自旋和偶极子在实验室坐标系中的平均投影为零的叠加态。此方案可应用于捕获的中性或离子物种,并且可以使用已通过实验证明的方法来实现。