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Unconventional photonic gaps of a one dimensional photonic band gap structure

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Wybrane pełne teksty z tego czasopisma
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Języki publikacji
EN
Abstrakty
EN
We present a scheme to realize the zero-n gap and the zero-oeff gap in a one dimensional photonic band gap structure containing metamaterials. The electric permittivity and the magnetic permeability of the layers of the structure are represented by the Drude model and the resonant model. In a certain frequency range, the chosen structure behaves as a structure of alternate double negative and double positive layers to exhibit a zero-n gap. In another frequency range, it behaves as a structure of alternate permittivity negative and permeability negative layers to exhibit a zero-oeff gap. Some properties and benefits of having the zero-n and the zero-oeff gap in the same physical system are discussed.
Czasopismo
Rocznik
Strony
743--752
Opis fizyczny
Bibliogr. 20 poz.
Twórcy
autor
  • Department of Physics, Punjab University, Quaid-i-Azam Campus, Lahore, Pakista
Bibliografia
  • [1] SMITH D.R., KROLL N., Negative refractive index in left-handed materials, Physical Review Letters 85(14), 2000, pp. 2933–2936.
  • [2] SHELBY R.A., SMITH D.R., SCHULTZ S., Experimental verification of a negative index of refraction, Science 292(5514), 2001, pp. 77–79.
  • [3] SHELBY R.A., SMITH D.R., NEMAT-NASSER S.C., SCHULTZ S., Microwave transmission through a two--dimensional, isotropic, left-handed metamaterial, Applied Physics Letters 78(4), 2001, pp. 489–491.
  • [4] ZHAROV A.A., SHADRIVOV I.V., KIVSHAR Y.S., Nonlinear properties of left-handed metamaterials, Physical Review Letters 91(3), 2003, p. 037401.
  • [5] FEISE M.W., SHADRIVOV I.V., KIVSHAR Y.S., Tunable transmission and bistability in left-handed band-gap structures, Applied Physics Letters 85(9), 2004, pp. 1451–1453.
  • [6] HAITAO JIANG, HONG CHEN, HONGQIANG LI, YEWEN ZHANG, JIAN ZI, SHIYAO ZHU, Properties of one--dimensional photonic crystals containing single-negative materials, Physical Review E 69(6), 2004, p. 066607.
  • [7] LI-GANG WANG, HONG CHEN, SHI-YAO ZHU, Omnidirectional gap and defect mode of one-dimensional photonic crystals with single-negative materials, Physical Review B 70(24), 2004, p. 245102.752 M.Z. ALI
  • [8] PENDRY J.B., HOLDEN A.J., STEWART W.J., YOUNGS I., Extremely low frequency plasmons in metallic mesostructures, Physical Review Letters 76(25) 1996, pp. 4773–4776.
  • [9] PENDRY J.B., HOLDEN A.J., ROBBINS D.J., STEWART W.J., Magnetism from conductors and enhanced nonlinear phenomena, IEEE Transactions on Microwave Theory and Techniques 47(11), 1999, pp. 2075–2084.
  • [10] HAITAO JIANG, HONG CHEN, HONGQIANG LI, YEWEN ZHANG, SHIYAO ZHU, Omnidirectional gap and defect mode of one-dimensional photonic crystals containing negative-index materials, Applied Physics Letters 83(26), 2003, pp. 5386–5388.
  • [11] KUN-YUAN XU, XIGUANG ZHENG, WEI-LONG SHE, Properties of defect modes in one-dimensional photonic crystals containing a defect layer with a negative refractive index, Applied Physics Letters 85(25), 2004, pp. 6089–6091.
  • [12] WOODLEY J.F., MOJAHEDI M., Negative group velocity and group delay in left-handed media, Physical Review E 70(4), 2004, p. 046603.
  • [13] JIANG HAI-TAO, CHEN HONG, LI HONG-QIANG, ZHANG YE-WEN, Omnidirectional gaps of one-dimensional photonic crystals containing single-negative materials, Chinese Physics Letters 22(4), 2005, pp. 884–886.
  • [14] HAITAO JIANG, HONG CHEN, HONGQIANG LI, YEWEN ZHANG, SHIYAO ZHU, Compact high-Q filters based on one-dimensional photonic crystals containing single-negative materials, Journal of Applied Physics 98(1), 2005, p. 013101.
  • [15] WANG S.M., TANG C.J., PAN T., GAO L., Bistability and gap soliton in one-dimensional photonic crystal containing single-negative materials, Physics Letters A 348(3–6), 2006, pp. 424–431.
  • [16] WANG S.M., GAO L., Nonlinear responses of the periodic structure composed of single negative materials, Optics Communications 267(1), 2006, pp. 197–204.
  • [17] CHEN Y.H., DONG J.W., WANG H.Z., Twin defect modes in one-dimensional photonic crystals with a single-negative material defect, Applied Physics Letters 89(14), 2006, p. 141101.
  • [18] BILBAULT J.M., REMOISSENET M., Gap solitons in nonlinear electrical superlattices, Journal of Applied Physics 70(8), 1991, pp. 4544–4550.
  • [19] JING CHEN, FANG-FANG REN, RUI LI, NIAN-HAI SHEN, YA-XIAN FAN, JIANPING DING, HUI-TIAN WANG, Dual localizations for second-harmonic generations using left-handed materials, Applied Physics Letters 87(25), 2005, p. 251104.
  • [20] FANG-FANG REN, RUI LI, CHEN CHENG, HUI-TIAN WANG, JIANRONG QIU, JINHAI SI, KAZUYUKI HIRAO, Giant enhancement of second harmonic generation in a finite photonic crystal with a single defect and dual-localized modes, Physical Review B 70(24), 2004, p. 245109.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPW7-0018-0053
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