-
2
-
-
0001487739
-
-
Appl. Phys. Lett., vol.71, p.1020, 1997.
-
K. Gallo, G. Assanto, and G. Stegeman, "Efficient wavelength shifting over the erbium amplifier bandwidth via cascaded second order processes in lithium niobatc waveguides," Appl. Phys. Lett., vol.71, p.1020, 1997.
-
Efficient Wavelength Shifting over the Erbium Amplifier Bandwidth Via Cascaded Second Order Processes in Lithium Niobatc Waveguides
-
-
Gallo, K.1
Assanto, G.2
Stegeman, G.3
-
3
-
-
0000846097
-
-
Opt. Lett., vol.23, p.1004, 1998.
-
3 waveguides with integrated coupling structures," Opt. Lett., vol.23, p.1004, 1998.
-
3 Waveguides with Integrated Coupling Structures
-
-
Chou, M.H.1
Hauden, J.2
Arbore, M.A.3
Fejer, M.M.4
-
4
-
-
0032677944
-
-
Phot. Tech. Lett., vol.11, p.653, 1999.
-
M.H. Chou, I. Brener, M.M. Fejer, E.E. Chaban, and S.B. Christman, "1.5/im band wavelength conversion based on cascaded second order nonlinearity in LiNbOs waveguides," Phot. Tech. Lett., vol.11, p.653, 1999.
-
1.5/im Band Wavelength Conversion Based on Cascaded Second Order Nonlinearity in LiNbOs Waveguides
-
-
Chou, M.H.1
Brener, I.2
Fejer, M.M.3
Chaban, E.E.4
Christman, S.B.5
-
5
-
-
85027126792
-
-
CLEO'98, CThZ2.
-
M.H. Chou, K.R. Parameswaran, M.A. Arbore, J.-Hauden, and M.M. Fejer, "Bidirectional wavelength conversion between 1.3- and 1.5-/jm telecommunication bands using difference frequency mixing in LiNbOa waveguides with integrated coupling structures," CLEO'98, CThZ2.
-
Bidirectional Wavelength Conversion between 1.3- and 1.5-/jm Telecommunication Bands Using Difference Frequency Mixing in LiNbOa Waveguides with Integrated Coupling Structures
-
-
Chou, M.H.1
Parameswaran, K.R.2
Arbore, M.A.3
J-Hauden4
Fejer, M.M.5
-
6
-
-
0033874375
-
-
IEEE Phot. Tech. Lett., vol.12, p.82, 2000.
-
3 waveguides (continued on back)," IEEE Phot. Tech. Lett., vol.12, p.82, 2000.
-
3 Waveguides (Continued on Back)
-
-
Chou, M.H.1
Brener, I.2
Lenz, G.3
Scotti, R.4
Chaban, E.E.5
Shmulovich, J.6
Philen, D.7
Kosinski, S.8
Parameswaran, K.R.9
Fejer, M.M.10
-
7
-
-
84899078567
-
-
and S. Kosinski, OFC 2000, TuFl.
-
I. Brener, M.H. Chou, E. Chaban, K.R. Parameswaran, M.M. Fejer, "Polarization-insensitive parametric wavelength converter based on cascaded nonlinearities in LiNbOs waveguides," and S. Kosinski, OFC 2000, TuFl.
-
Polarization-insensitive Parametric Wavelength Converter Based on Cascaded Nonlinearities in LiNbOs Waveguides
-
-
Brener, I.1
Chou, M.H.2
Chaban, E.3
Parameswaran, K.R.4
Fejer, M.M.5
-
8
-
-
0034204778
-
-
to be published in IEEE Phot. Tech. Lett., vol.12, no.G, June 2000.
-
K.R. Parameswaran, M. Fujimura, M.H. Chou, and M.M. Fejer, "Low power all-optical gate based on sum frequency mixing in APE waveguides in PPLN," to be published in IEEE Phot. Tech. Lett., vol.12, no.G, June 2000.
-
Low Power All-optical Gate Based on Sum Frequency Mixing in APE Waveguides in PPLN
-
-
Parameswaran, K.R.1
Fujimura, M.2
Chou, M.H.3
Fejer, M.M.4
-
9
-
-
0025700790
-
-
Electron. Lett., vol.26, p.962, 1990. [10] T. Suhara, H. Ishizuki, M. Fujimura, and H. Nishihara, Waveguide quasi-phase-matched sum-frequency generation device for high-efficiency optical sampling, IEEE Phot. Tech. Lett., vol.11, p.1027, 1999.
-
K.J. Blow, N.J. Doran, and B.P. Nelson, "Demonstration of the nonlinear fibre loop mirror as an ultrafast all-optical demultiplexer," Electron. Lett., vol.26, p.962, 1990. [10] T. Suhara, H. Ishizuki, M. Fujimura, and H. Nishihara, "Waveguide quasi-phase-matched sum-frequency generation device for high-efficiency optical sampling," IEEE Phot. Tech. Lett., vol.11, p.1027, 1999.
-
Demonstration of the Nonlinear Fibre Loop Mirror As An Ultrafast All-optical Demultiplexer
-
-
Blow, K.J.1
Doran, N.J.2
Nelson, B.P.3
|