Paper
27 February 2015 Second harmonic generation at oblique angles in photonic bandgap structures
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Abstract
Second harmonic generation generated by an obliquely incident fundamental wave in a nonlinear photonic bandgap structure is analyzed by applying the transfer matrix method, where multiple reflection and interference effects are taken into account. The radiation of fundamental and second harmonic waves from the exit plane of the nonlinear photonic bandgap structure, and the distribution of the fields within the structure are discussed. Under the non-depleted pump wave assumption, the conversion efficiency of the second harmonic wave versus the incident angle of the fundamental is studied in detail.
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Han Li, Joseph W. Haus, and Partha P. Banerjee "Second harmonic generation at oblique angles in photonic bandgap structures", Proc. SPIE 9347, Nonlinear Frequency Generation and Conversion: Materials, Devices, and Applications XIV, 93470Z (27 February 2015); https://doi.org/10.1117/12.2082967
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Cited by 3 scholarly publications.
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KEYWORDS
Second-harmonic generation

Harmonic generation

Refractive index

Wave propagation

Nonlinear crystals

Phase matching

Photonic crystals

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