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Nonlinear Phase-Change in Type-II 2nd-Harmonic Generation under
Exact Phase-Matched Conditions
Belostotsky, A.L., A.S.
Leonov, and A.V.
Meleshko,
Optics Letters, 1994.
19(12): p. 856-858.
(Full text pdf)
Copyright 1994
Optical Society of America, Inc.
Abstract
References Cited by
Recent_publications_in_the_area
Abstract
The process of type II second-harmonic generation has
been investigated theoretically. It is found that, unlike in the process
of type I second-harmonic generation, phase matching is not necessary
for a significant shift of the pump wave phase to be produced. The
simple inequality of the intensities of interacting waves suffices for
this effect to occur.
References
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second-harmonic generation. JOURNAL OF THE OPTICAL SOCIETY OF AMERICA
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beyond the chi((3)) perspective. OPTICA APPLICATA 26 (4): 275-284.
Asobe, M; Yokohama, I; Itoh, H; Kaino, T. 1997. All-optical switching by
use of cascading of phase-matched sum-frequency-generation and
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Record 28 of 33
ASSANTO, G; WANG, Z; HAGAN, DJ; VANSTRYLAND, EW. 1995. ALL-OPTICAL
MODULATION VIA NONLINEAR CASCADING IN TYPE-II 2ND-HARMONIC GENERATION.
APPLIED PHYSICS LETTERS 67 (15): 2120-2122.
ASSANTO, G; TORELLI, I. 1995. CASCADING EFFECTS IN TYPE-II 2ND-HARMONIC
GENERATION - APPLICATIONS TO ALL-OPTICAL PROCESSING. OPTICS
COMMUNICATIONS 119 (1-2): 143-148.
KOBYAKOV, A; PESCHEL, U; MUSCHALL, R; ASSANTO, G; TORCHIGIN, VP; LEDERER,
F. 1995. ANALYTICAL APPROACH TO ALL-OPTICAL MODULATION BY CASCADING.
OPTICS LETTERS 20 (16): 1686-1688.
ASSANTO, G. 1995. TRANSISTOR ACTION THROUGH NONLINEAR CASCADING IN
TYPE-II INTERACTIONS. OPTICS LETTERS 20 (15): 1595-1597.
TRAN, HT. 1995. SELF-INDUCED PHASE-MATCHING AND 3-WAVE BRIGHT SPATIAL
SOLITONS IN QUADRATIC MEDIA. OPTICS COMMUNICATIONS 118 (5-6): 581-586.
ASSANTO, G; STEGEMAN, GI; SHEIKBAHAE, M; VANSTRYLAND, E. 1995. COHERENT
INTERACTIONS FOR ALL-OPTICAL SIGNAL-PROCESSING VIA QUADRATIC
NONLINEARITIES. IEEE JOURNAL OF QUANTUM ELECTRONICS 31 (4): 673-681.
Recent publications in
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Hu, YJ; Yao, DZ. 2005. Phase variation of fundamental field induced by
cascaded second order nonlinear processes in KTP. OPTICA APPLICATA 35
(2): 403-408.
--------------------------------------------------------------
Record 2 of 6
Sun, JQ; Ma, ZT; Liu, DM; Huang, DX. 2005. Wavelength conversion between
picosecond pulses using cascaded second-order nonlinearity in LiNbO3
waveguides. OPTICAL AND QUANTUM ELECTRONICS 37 (5): 443-456.
--------------------------------------------------------------------------------
Record 3 of 6
Yu, S; Gu, WY. 2005. A tunable wavelength conversion and wavelength
add/drop scheme based on cascaded second-order nonlinearity with
double-pass configuration. IEEE JOURNAL OF QUANTUM ELECTRONICS 41 (7):
1007-1012.
--------------------------------------------------------------------------------
Record 4 of 6
Sun, J; Yuan, X; Liu, D. 2005. Tunable wavelength conversion between
picosecond pulses using cascaded second-order nonlinearity in LiNbO3
waveguides. APPLIED PHYSICS B-LASERS AND OPTICS 80 (6): 681-685.
--------------------------------------------------------------------------------
Record 5 of 6
Chen, B; Bracken, J; Verleyen, F; Wang, Y; Xu, CQ. 2005. Analysis of
all-optical intra-cavity wavelength conversions in fiber ring
resonators. OPTICS COMMUNICATIONS 247 (1-3): 57-64. |
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