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超构材料作为一种新型人工微结构材料,由于它可以提供自然界不存在或者难以实现的特殊性质,受到了广泛的关注.本研究组基于LC回路模型的量子化方法,研究了超构材料的元激发,并引入了准粒子的概念.使用双光子干涉的方法,证明了超构材料具有量子特性,并验证了量子化方法的正确性.基于这套量子化方法,进一步研究了超构材料与活性材料相互作用的问题,发现这个体系可以产生受激辐射放大的效应.这些结果表明,超构材料不但可以有效地调控经典光,在量子光学方面也有潜在的应用前景.

参考文献

[1] Pendry J B,Holden A J,et al.Magnetism from conductors and enhanced nonlinear phenomena[J].IEEE Trans.Microwave Theory Tech.,1999,47:2075-2084.,1999.
[2] Shelby R A,Smith D R,Schultz S.Experimental verification of a negative index of refraction[J].Science,2001,292:77.,2001.
[3] Pendry J B.Negative refraction makes a perfect lens[J].Phys.Rev.Lett.,2000,85:3966.,2000.
[4] Pendry J B,Schurig D,Smith D R.Controlling electromagnetic fields[J].Science,2006,312:1780.,2006.
[5] Lai Y,Ng J,Chen H Y,et al.Illusion optics:The optical transformation of an object into another object[J].Phys.Rev.Lett.,2009,102:253902.,2009.
[6] Walser R M.Electromagnetic metamaterials[J].Proc.SPIE,2001,4467:1-15.,2001.
[7] Altewischer E,van Exter M P,Woerdman J P.Plasmon-assisted transmission of entangled photons[J].Nature,2002,418:304.,2002.
[8] Tame M S,McEnery K R,(O)zdemir S K,et al.Quantum plasmonics[J].Nat.Phys.,2013,9:329.,2013.
[9] Engheta N.Circuits with light at nanoscales:Optical nanocircuits inspired by metamaterials[J].Science,2007,317:1698.,2007.
[10] Liu H,Genov D A,Wu D M,et al.Magnetic plasmon propagation along a chain of connected subwavelength resonators at infrared frequencies[J].Phys.Rev.Lett.,2006,97:243902.,2006.
[11] Hong C K,Ou Z Y,et al.Measurement of subpicosecond time intervals between two photons by interference[J].Phys.Rev.Lett.,1987,59:2044.,1987.
[12] Steinberg A M,Kwiat P G,Chino R Y.Dispersion cancellation in a measurement of the single-photon propagation velocity in glass[J].Phys.Rev.Lett.,1992,68:2421.,1992.
[13] Bouwmeester D,Pan J W,Mattle K,et al.Experimental quantum teleportation[J].Nature,1997,390:575-579.,1997.
[14] Knill E,Laflamme R,Milburn G J.A scheme for efficient quantum computation with linear optics[J].Nature,2001,409:46.,2001.
[15] Wang S M,Mu S Y,Zhu C,et al.The two-photon interference mediated by the magnetic resonance in twodimensional metamaterial[J].Quantum Information Processing,2013,12:825.,2013.
[16] Valentine J,Zhang S,Zentgraf T,et al.Three dimensional optical metamaterial exhibiting negative refractive index[J].Nature,2008,455:376.,2008.
[17] Wang S M,Mu S Y,Zhu C,et al.The Hong-Ou-Mandel interference mediated by the magnetic plasmon waves in a three-dimensional optical metamaterial[J].Opt.Expr.,2012,20:5213.,2012.
[18] Wang S M,Li T,Liu H,et al.Magnetic plasmon modes in periodic chains of nanosandwiches[J].Opt.Expr.,2008,16:3560.,2008.
[19] Purcell E M.Spontaneous emission probabilities at radio frequencies[J].Phys.Rev.,1946,69:681.,1946.
[20] Wang S M,Liu H,Li T,et al.The interaction between quantum dots and coupled magnetic plasmon in coupled metamaterial[J].Phys.Lett.A,2012,376:1812.,2012.
[21] Zhu Z H,Liu H,et al.Optically pumped nanolaser based on two magnetic plasmon resonance modes[J].Appl.Phys.Lett.,2009,94:103106.,2009.
[22] Wang S M,Zhu Z H,Cao J X,et al.The gain effect in a magnetic plasmon waveguide[J].Appl.Phys.Lett.,2010,96:113103.,2010.
[23] Poddubny A,Iorsh I,Belov P,et al.Hyperbolic metamaterials[J].Nat.Photon.,2013,7:958.,2013.
[24] Suchowski H,O'Brien K,Wong Z J,et al.Phase mismatch-free nonlinear propagation in optical zero-index materials[J].Science,201,3342:1223.
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