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0026941349
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Short pulse generation using multisegment mode locked semiconductor lasers
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Derickson, D.J.1
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2
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0029253253
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Self-starting soliton mode-locked Ti:sapphire laser using a thin semiconductor saturable absorber
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L. R. Brovelli, I. D. Jung, D. Kopf, M. Kamp, M. Moser, F. X. Kartner, and U. Keller, "Self-starting soliton mode-locked Ti:sapphire laser using a thin semiconductor saturable absorber," Electron. Lett. 31, 287-289 (1995).
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3
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0030229999
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Mode-locking ultrafast solid-state lasers with saturable Bragg reflectors
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S. Tusda, W. H. Knox, S. T. Cundiff, W. Y. Jan, and J. E. Cunningham, "Mode-locking ultrafast solid-state lasers with saturable Bragg reflectors," IEEE J. Sel. Top. Quantum Electron. 2, 454-464 (1996).
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Tusda, S.1
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4
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84975555387
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Low-loss intracavity AlAs/AlGaAs saturable Bragg reflector for femtosecond mode locking in solid-state lasers
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S. Tusda, W. H. Knox, E. A. de Souza, W. Y. Jan, and J. E. Cunningham, "Low-loss intracavity AlAs/AlGaAs saturable Bragg reflector for femtosecond mode locking in solid-state lasers," Opt. Lett. 20, 1406-1408 (1996).
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0030212560
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4 laser
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Collings, B.C.1
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Knox, W.H.4
Cunningham, J.E.5
Jan, W.Y.6
Pathak, R.7
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6
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0008868772
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High efficiency diode pumping of a saturable Bragg reflector-mode-locked Cr:LiSAF femtosecond laser
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S. Tusda, W. H. Knox, and S. T. Cundiff, "High efficiency diode pumping of a saturable Bragg reflector-mode-locked Cr:LiSAF femtosecond laser," Appl. Phys. Lett. 69, 1538-1540 (1996).
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Tusda, S.1
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7
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0027147861
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Passive mode-locked Er3+ fiber laser using a semiconductor nonlinear mirror
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W. H. Loh, D. Atkinson, P. R. Morkel, M. Hopkinson, A. Rivers, A. J. Seeds, and D. N. Payne, "Passive mode-locked Er3+ fiber laser using a semiconductor nonlinear mirror," IEEE Photonics Technol. Lett. 5, 35-37 (1993).
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Loh, W.H.1
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Seeds, A.J.6
Payne, D.N.7
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8
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0001609970
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Transform-limited 1.4 ps optical pulses from a monolithic colliding-pulse-mode-locked quantum well laser
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M. C. Wu, Y. K. Chen, T. Tanbun-Ek, R. A. Logan, M. A. Chin, and G. Raybon, "Transform-limited 1.4 ps optical pulses from a monolithic colliding-pulse-mode-locked quantum well laser," Appl. Phys. Lett. 57, 759-761 (1990).
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Wu, M.C.1
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Raybon, G.6
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9
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0028443511
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Photopumped long wavelength verticlecavity surface-emitting lasers using strain-compensated multiple quantum wells
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C. H. Lin, C. L. Chua, Z. H. Zhu, F. E. Ejeckam, T. C. Wu, and Y. H. Lo, "Photopumped long wavelength verticlecavity surface-emitting lasers using strain-compensated multiple quantum wells," Appl. Phys. Lett. 64, 3395-3397 (1994).
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Lin, C.H.1
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Wu, T.C.5
Lo, Y.H.6
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10
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0029305524
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Low-threshold 1.57-μm VCSEL's using strain-compensated quantum wells and oxide/metal backmirror
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C. L. Chua, Z. H. Zhu, Y. H. Lo, R. Bhat, and M. Hong, "Low-threshold 1.57-μm VCSEL's using strain-compensated quantum wells and oxide/metal backmirror," IEEE Photonics Technol. Lett. 7, 444-446 (1995).
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Chua, C.L.1
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Hong, M.5
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11
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0026895560
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Sub-picosecond (320 fs) pulses from cw passively mode-locked external cavity two-section multiquantum well lasers
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T. Schrans, R. A. Salvatore, S. Sanders, and A. Yariv, "Sub-picosecond (320 fs) pulses from cw passively mode-locked external cavity two-section multiquantum well lasers," Electron. Lett. 28, 1480-1482 (1992).
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0027046879
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Grating compensation of third-order fiber dispersion
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M. Stern, J. P. Heritage, and E. W. Chase, "Grating compensation of third-order fiber dispersion," IEEE J. Quantum Electron. 28, 2742-2748 (1992).
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Stern, M.1
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13
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0029288036
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Pulse characteristic of passively mode-locked diode lasers
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R. A. Salvatore, T. Schrans, and A. Yariv, "Pulse characteristic of passively mode-locked diode lasers," Opt. Lett. 20, 737-739 (1995).
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Salvatore, R.A.1
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14
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84975659967
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Compression of optical pulses to six femtoseconds by using cubic phase compensation
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R. L. Fork, C. H. Brito Cruz, P. C. Becker, and C. V. Shank, "Compression of optical pulses to six femtoseconds by using cubic phase compensation," Opt. Lett. 12, 483-485 (1987).
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Fork, R.L.1
Brito Cruz, C.H.2
Becker, P.C.3
Shank, C.V.4
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15
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0030230559
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Higher order chirp compensation of femtosecond mode-locked semiconductor lasers using optical fiber with different group-velocity dispersions
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S. Arahira, S. Kutsuzawa, Y. Matsui, and Y. Ogawa, "Higher order chirp compensation of femtosecond mode-locked semiconductor lasers using optical fiber with different group-velocity dispersions," IEEE J. SeL Top. Quantum Electron. 2, 480-485 (1996).
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Arahira, S.1
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