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James J. Coleman, A. Catrina Bryce and Chennupati Jagadish's Advances in Semiconductor Lasers PDF

By James J. Coleman, A. Catrina Bryce and Chennupati Jagadish (Eds.)

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5V. CuW submount with AuSn solder. 3-GHz fundamental cavity rate (see above). The RF spectrum of the detected CPM-SCOWL pulse train (Fig. 3-GHz fundamental frequency component. This suppression implies that both the energy and shape of the counter-propagating pulses are highly correlated. 2V. At this bias condition, the measured pulse width was 11ps and the time–bandwidth product was about 10, indicating that the pulses are again highly chirped. , 2009). , 2009). , SCOW Lasers and Amplifiers 43 2009).

IEEE Photon. Technol. Lett. 23(14), 974–976. , Plant, J. , Donnelly, J. , O’Donnell, F. , Ram, R. , and Juodawlkis, P. W. (2011). IEEE J. Quantum Electron. 47(1), 66–75. , Plant, J. , Juodawlkis, P. , and Delfyett, P. J. (2010). Appl. Opt. 49(15), 2850–2857. Marcatili, E. A. J. (1974). Bell Syst. Tech. J. 54(4), 645–672. Mawst, L. , Garbuzov, D. , and Connolly, J. C. (1996). Appl. Phys. Lett. 69(11), 1532–1534. , Plant, J. , Donnelly, J. , Juodawlkis, P. , and Ippen, E. P. (2008). Appl. Phys. Lett.

Quantum Electron. 47(1), 66–75. , Plant, J. , Juodawlkis, P. , and Delfyett, P. J. (2010). Appl. Opt. 49(15), 2850–2857. Marcatili, E. A. J. (1974). Bell Syst. Tech. J. 54(4), 645–672. Mawst, L. , Garbuzov, D. , and Connolly, J. C. (1996). Appl. Phys. Lett. 69(11), 1532–1534. , Plant, J. , Donnelly, J. , Juodawlkis, P. , and Ippen, E. P. (2008). Appl. Phys. Lett. 3. , and Lang, R. J. (1997). Electron. Lett. 33(22), 1869–1871. SCOW Lasers and Amplifiers 47 Petrescu-Prahova, I. , and van de Roer, T.

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