1 |
WANG X L, CHEN L K, LI W, et al. Experimental ten-photon entanglement. Physical Review Letters, 2016, 117 (21): 210502.
|
2 |
FRIIS N, MARTY O, MAIER C, et al. Observation of entangled states of a fully controlled 20-qubit system. Physical Review X, 2018, 8 (2): 021012.
|
3 |
EINSTEIN A, PODOLSKY B, ROSEN N. Can quantum-mechanical description of physical reality be considered complete?. Physical Review, 1935, 47, 777-780.
|
4 |
BELL J S. On the Einstein-Podolsky-Rosen paradox. Physics, 1964, 1 (3): 195- 200.
|
5 |
BRUNNER N, CAVALCANTI D, PIRONIO S, et al. Bell nonlocality. Reviews of Modern Physics, 2014, 86(2), 419- 478.
|
6 |
CLAUSER J F, HORNE M A, SHIMONY A, et al. Proposed experiment to test local hidden-variable theories. Physical Review Letters, 1969, 23 (15): 880-884.
|
7 |
FREEDMAN S J, CLAUSER J F. Experimental test of local hidden-variable theories. Physical Review Letters, 1972, 28(14), 938- 941.
|
8 |
ASPECT A, DALIBARD J, ROGER G. Experimental test of Bell's inequalities using time-varying analyzers. Physical Review Letters, 1982, 49(25), 1804- 1807.
|
9 |
OU Z Y, MANDEL L. Violation of Bell’s inequality and classical probability in a two-photon correlation experiment. Physical Review Letters, 1988, 61(1), 50- 53.
|
10 |
MUNRO W J, REID M D. Violation of Bell’s inequality by macroscopic states generated via parametric down-conversion. Physical Review A, 1993, 47 (5): 4412-4421.
|
11 |
HORODECKI R, HORODECKI P, HORODECKI M, et al. Quantum entanglement. Reviews of Modern Physics, 2009, 81, 865- 942.
|
12 |
CHANG M S, HAMLEY C D, BARRETT M D, et al. Observation of spinor dynamics in optically trapped 87Rb Bose-Einstein condensates . Physical Review Letters, 2004, 92(14), 140403.
|
13 |
KLEMPT C, GEBREYESUS G, SCHERER M, et al. Parametric amplification of vacuum fluctuations in a spinor condensate. Physical Review Letters, 2010, 104 (19): 195303.
|
14 |
PEISE J, KRUSE I, LANGE K, et al. Satisfying the Einstein-Podolsky-Rosen criterion with massive particles [J]. Nature Communications, 2015(6): 8984. DOI: 10.1038/ncomms9984.
|
15 |
LÜCKE B, SCHERER M, KRUSE J, et al. Twin matter waves for interferometry beyond the classical limit. Science, 2011, 334 (6057): 773- 776.
|
16 |
LANGE K, PEISE J, LÜCKE B, et al. Entanglement between two spatially separated atomic modes. Science, 2018, 360 (6387): 416- 418.
|
17 |
WALLS D F, MILBURN G J. Quantum Optics [M]. Berlin: Springer, 1994.
|
18 |
GERRY C, KNIGHT P. Introductory Quantum Optics [M]. Cambridge: Cambridge University Press, 2004.
|
19 |
CARMICHAEL H J. Statistical Methods in Quantum Optics 1 [M]. Berlin: Springer, 1999.
|
20 |
SCULLY M O, ZUBAIRY M S. Quantum Optics [M]. [S.l.]: American Association of Physics Teachers, 1999.
|
21 |
OUDOT E, BANCAL J-D, SCHMIED R, et al. Optimal entanglement witnesses in a split spin-squeezed Bose-Einstein condensate. Physical Review A, 2017, 95 (5): 052347.
|
22 |
JING Y, FADEL M, IVANNIKOV V, et al. Split spin-squeezed Bose-Einstein condensates. New Journal of Physics, 2019, 21 (9): 093038.
|
23 |
BYRNES T, ILO-OKEKE E O. Quantum atom optics: Theory and applications to quantum technology[EB/OL]. (2020-10-28)[2021-04-04]. https://doi.org/10.48550/arXiv.2007.14601.
|
24 |
PEZZÈ L, SMERZI A, OBERTHALER M K, et al. Quantum metrology with nonclassical states of atomic ensembles. Reviews of Modern Physics, 2018, 90(3), 035005.
|
25 |
BRAUNSTEIN S L, VAN LOOCK P. Quantum information with continuous variables. Reviews of Modern Physics, 2005, 77 (2): 513- 577.
|
26 |
RALPH T C, MUNRO W J, POLKINGHORNE R E S. Proposal for the measurement of Bell-type correlations from continuous variables. Physical Review Letters, 2000, 85(10), 2035- 2039.
|
27 |
KITZINGER J, CHAUDHARY M, KONDAPPAN M, et al. Two-axis two-spin squeezed states. Physical Review Research, 2020, 2(3), 033504.
|
28 |
MUNRO W J, REID M D. Violation of Bell’s inequality by macroscopic states generated via parametric down-conversion. Physical Review A, 1993, 47(5), 4412- 4421.
|
29 |
BARNETT S M, PHILLIPS L S, PEGG D T. Imperfect photodetection as projection onto mixed states. Optics Communications, 1998, 158 (1/2/3/4/5/6): 45- 49.
|