光子分子:修订间差异

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2021年3月15日 (一) 02:11的版本

光子能结合在一起形成分子[1][2][3][4],此時它被称为光子分子。光子分子是一种理论上的自然物质,它也可以由人工制造。光子分子最早於2007年被人预测。

研究人员提请现象和虚构“之间的相似光剑从”星球大战[4] [5] [[Category:粒子物理学]] [[Category:原子物理学]]

  1. ^ Shen, Jung-Tsung; Fan, Shanhui. Strongly Correlated Two-Photon Transport in a One-Dimensional Waveguide Coupled to a Two-Level System. Physical Review Letters. 2007-04-13, 98 (15): 153003. Bibcode:2007PhRvL..98o3003S. PMID 17501344. arXiv:quant-ph/0701170可免费查阅. doi:10.1103/PhysRevLett.98.153003. 
  2. ^ Shen, Jung-Tsung; Fan, Shanhui. Strongly correlated multiparticle transport in one dimension through a quantum impurity. Physical Review A. 2007-12-27, 76 (6): 062709. Bibcode:2007PhRvA..76f2709S. arXiv:0707.4335可免费查阅. doi:10.1103/PhysRevA.76.062709. 
  3. ^ Deutsch, Ivan H.; Chiao, Raymond Y.; Garrison, John C. Diphotons in a nonlinear Fabry-Pérot resonator: Bound states of interacting photons in an optical quantum wire. Physical Review Letters. 1992-12-21, 69 (25): 3627–3630. PMID 10046872. doi:10.1103/PhysRevLett.69.3627. 
  4. ^ 4.0 4.1 Seeing light in a new light: Scientists create never before seen form of matter. Science-daily.com. [2013-09-27].  引用错误:带有name属性“sd”的<ref>标签用不同内容定义了多次
  5. ^ Firstenberg, O.; Peyronel, T.; Liang, Q. Y.; Gorshkov, A. V.; Lukin, M. D.; Vuletić, V. Attractive photons in a quantum nonlinear medium (PDF). Nature (Submitted manuscript). 2013, 502 (7469): 71–75. Bibcode:2013Natur.502...71F. PMID 24067613. doi:10.1038/nature12512.