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Volumn 22, Issue 2, 2009, Pages 201-218

Positional dependence of FDTD mode detection in photonic crystal systems

Author keywords

FDTD; Periodic; Photonic crystals

Indexed keywords

COMPUTATIONAL TIME; DETECTOR PLACEMENTS; FDTD; FDTD SIMULATIONS; FILTER DIAGONALIZATION; FINITE-DIFFERENCE TIME-DOMAIN ALGORITHMS; FLOQUET; HIGHER-ORDER MODES; MODE DETECTIONS; NODE DENSITIES; PARALLELIZATION ALGORITHMS; PERIODIC; PERIODIC SYSTEMS; PHOTONIC CRYSTAL SYSTEMS;

EID: 63849173830     PISSN: 08943370     EISSN: 10991204     Source Type: Journal    
DOI: 10.1002/jnm.709     Document Type: Article
Times cited : (9)

References (12)
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  • 4
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    • Moreno, E.1    Erni, D.2    Hafner, C.3
  • 5
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    • Order-n spectral method for electromagnetic waves
    • Chan CT, Yu QL, Ho KM. Order-n spectral method for electromagnetic waves. Physical Review B 1995; 51(23): 16635-16642.
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    • Chan, C.T.1    Yu, Q.L.2    Ho, K.M.3
  • 8
    • 33750507944 scopus 로고    scopus 로고
    • Improving accuracy by subpixel smoothing in the finite-difference time domain
    • Farjadpour A, et al. Improving accuracy by subpixel smoothing in the finite-difference time domain. Optics Letters 2006; 31:2872-2974.
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    • Farjadpour, A.1
  • 9
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  • 10
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    • Extraction, through filter diagonalization, of general quantum eigenvalues or classical normal mode frequencies from a small number of residues of a short-time segment of a signal
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    • Wall, M.R.1    Neuhauser, D.2
  • 11
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    • Balancing accuracy against computation time: 3-d FDTD for nanophotonics device computation
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    • (2005) Proceedings of the SPIE , vol.5733 , pp. 336-347
    • Burr, G.W.1    Farjadpour, A.2
  • 12


* 이 정보는 Elsevier사의 SCOPUS DB에서 KISTI가 분석하여 추출한 것입니다.