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

Tomography; Quantum metrology; Heisenberg limit
제목
Ultimate precision of direct tomography of wave functions
저자
Xuan-Hoai Thi Nguyen; Choi, Mahn-Soo
DOI
10.1007/s11128-021-03167-0
발행일
2021-07
유형
Article
저널명
Quantum Information Processing
권
20
호
7