Quantum-limited metrology in the presence of collisional dephasing

Abstract

Including collisional decoherence explicitly, phase sensitivity for estimating effective scattering strength of a two-component Bose-Einstein condensate is derived analytically. With a measurement of spin operator Jx, we find that the optimal sensitivity depends on initial coherent spin state. It degrades by a factor of (2γ)1/3 below super-Heisenberg limit 1/N3/2 for particle number N and the dephasing rate 1<\!<γ<N3/4. With a Jy measurement, our analytical results confirm that the phase φ= t 0 can be detected at the limit even in the presence of the dephasing.

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