Sufficient Statistic and Recoverability via Quantum Fisher Information

Author:

Gao LiORCID,Li Haojian,Marvian Iman,Rouzé Cambyse

Funder

National Science Foundation

Deutsche Forschungsgemeinschaft

Publisher

Springer Science and Business Media LLC

Reference54 articles.

1. Braunstein, S.L., Caves, C.M.: Statistical distance and the geometry of quantum states. Phys. Rev. Lett. 72(22), 3439 (1994)

2. Braunstein, S.L., Caves, C.M., Milburn, G.J.: Generalized uncertainty relations: theory, examples, and Lorentz invariance. Ann. Phys. 247(1), 135–173 (1996)

3. Barndorff-Nielsen, O.E., Gill, R.D.: Fisher information in quantum statistics. J. Phys. A Math. Gen. 33(24), 4481 (2000)

4. Čencov, N.N.: Algebraic foundation of mathematical statistics. Stat. J. Theor. Appl. Stat. 9(2), 267–276 (1978)

5. Cotler, J., Hayden, P., Penington, G., Salton, G., Swingle, B., Walter, M.: Entanglement wedge reconstruction via universal recovery channels. Phys. Rev. X 9(3), 031011 (2019)

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