Ultimate precision of direct tomography of wave functions

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초록

In contrast to the standard quantum state tomography, the direct tomography seeks a direct access to the complex values of the wave function at particular positions. Originally put forward as a special case of weak measurement, it has been extended to arbitrary measurement setup. We generalize the idea of "quantum metrology," where a real-valued phase is estimated, to the estimation of complex-valued phase. We show that it enables to identify the optimal measurements and investigate the fundamental precision limit of the direct tomography. We propose a few experimentally feasible examples of direct tomography schemes and, based on the complex phase estimation formalism, demonstrate that direct tomography can reach the Heisenberg limit.

키워드

TomographyQuantum metrologyHeisenberg limit
제목
Ultimate precision of direct tomography of wave functions
저자
Xuan-Hoai Thi NguyenChoi, Mahn-Soo
DOI
10.1007/s11128-021-03167-0
발행일
2021-07
유형
Article
저널명
Quantum Information Processing
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