• Laser & Optoelectronics Progress
  • Vol. 51, Issue 1, 12205 (2014)
Zhu Yuguang1、2、*, Fang Yuntuan3, and Hu Weili1
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
  • 3[in Chinese]
  • show less
    DOI: 10.3788/lop51.012205 Cite this Article Set citation alerts
    Zhu Yuguang, Fang Yuntuan, Hu Weili. Design of Collimator and Optical Splitter Based on Near-Zero-Index Materials[J]. Laser & Optoelectronics Progress, 2014, 51(1): 12205 Copy Citation Text show less
    References

    [1] D R Smith, W J Padilla, D C Vier, et al.. Composite medium with simultaneously negative permeability and permittivity[J]. Phys Rev Lett., 2000, 84(18): 4184-4187.

    [2] D R Smith, J B Pendry, M C K Wiltshire. Metamaterials and negative refractive index[J]. Science, 2004, 305(5865): 788-792.

    [3] U Leonhardt. Optical conformal mapping[J]. Science, 2006, 312(5781): 1777 -1780.

    [4] J B Pendry, D Schurig, D R Smith. Controlling electromagnetic fields[J]. Science, 2006, 312(5781): 1780 -1782.

    [5] M Rahm, D Schurig, D A Roberts, et al.. Design of electromagnetic cloaks and concentrators using form-invariant coordinate transformations of Maxwell′s equations[J]. Photon Nanostruct Fundam Appl, 2008, 6(1): 87-95.

    [6] H Y Chen, C T Chan. Transformation media that rotate electromagnetic fields[J]. Appl Phys Lett, 2007, 90(24): 241105-241107.

    [7] M Yan, W Yan, M Qiu. Cylindrical superlens by a coordinate transformation[J]. Phys Rev B, 2008, 78(12): 125113-125119.

    [8] T Yang, H Y Chen, X D Luo, et al.. Superscatterer: enhancement of scattering with complementary media[J]. Opt Express, 2008, 16(22): 18545 -18550.

    [9] S Enoch, G Tayeb, P Sabouroux, et al.. A metamaterial for directive emission[J]. Phys Rev Lett, 2002, 89(21): 213902-213905.

    [10] M Silveirinha, N Engheta. Tunneling of electromagnetic energy through subwavelength channels and bends using e-nearz-zero materials[J]. Phys Rev Lett, 2006, 97(15): 157403-157406.

    [11] M Silveirinha, N Engheta. Theory of supercoupling, squeezing wave energy, and field confinement in narrow channels and tight bends using e near-zero metamaterials[J]. Phys Rev B, 2007, 76(24): 245109-245125.

    [12] D C Adams, S Inampudi, T Ribaudo, et al.. Funneling light through a subwavelength aperture with epsilon-near-zero materials[J]. Phys Rev Lett, 2011,107(13):133901-133905.

    [13] R W Ziolkowski. Propagation in and scattering from a matched metamaterial having a zero index of refraction[J]. Phys Rev E, 2004, 70(4): 046608-046619.

    [14] A Alù, M G Silveirinha, A Salandrino, et al.. Epsilon-near-zero metamaterials and electromagnetic sources: tailoring the radiation phase pattern[J]. Phys Rev B, 2007, 75(15): 155410-155422.

    [15] Zhou Xingping, Shu Jing. Novel 1×3 splitter based on photonic crystal self-collimation effect[J]. Acta Optica Sinica, 2013, 33(4): 0423002.

    [16] Su Zhouping, Que Lizhi, Zhu Zhuowei,et al.. Optical system design of the compact collimator for LED source[J]. Laser & Optoelectronics Progress, 2012, 49(2): 022203.

    [17] Zhou Fei, Fei Hongming, Chen Zhihui, et al.. A high efficiency photonic crystal polarization beam splitter[J]. Laser & Optoelectronics Progress, 2013, 50(6): 062304.

    [18] Yuntuan Fang, Jijun Wang, Zhili Lin. Tailoring radiation pattern through designed structures using near-zero-index materials[J]. Optics and Spectroscopy, 2013, 115(1):121-127.

    [19] Hao Wenwen, Yu Guiying, Hu Xing. Solar concentrating system based on planar waveguide[J]. Laser & Optoelectronics Progress, 2012, 49(8): 082202.

    [20] M Silveirinha, N Engheta. Design of matched zero-index metamaterials using nonmagnetic inclusions in epsilon-near-zero media[J]. Phys. Rev. B,2007, 75(7): 075119.

    CLP Journals

    [1] Zeng Weiyou, Chen Jie. Realization of Dirac Point in Two Dimensional Photonic Crystals with Rectangular Dielectric Rods[J]. Laser & Optoelectronics Progress, 2016, 53(7): 72302

    Zhu Yuguang, Fang Yuntuan, Hu Weili. Design of Collimator and Optical Splitter Based on Near-Zero-Index Materials[J]. Laser & Optoelectronics Progress, 2014, 51(1): 12205
    Download Citation