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4 Light Sources for Fiber Links
5. B.L. Anderson, R.L. Anderson, Fundamentals of Semiconductor Devices, 2 nd edn. (McGrawHill, 2018)
6. S.O. Kasap, Principles of Electronic Materials and Devices, 4th edn. (McGraw-Hill, 2018)
7. J.J. Coleman, A.C. Bryce, C. Jagadish (eds.) Advances in Semiconductor Lasers (Academic
Press, 2012)
8. S. Adachi, III–V ternary and quaternary compounds, Chap. 1, in Springer Handbook of
Electronic and Photonic Materials, ed. by S. Kasap, P. Capper (Springer 2017)
9. C.A. Burrus, B.I. Miller, Small-area double heterostructure AlGaAs electroluminescent diode
sources for optical fiber transmission lines. Opt. Commun. 4, 307–309 (1971)
10. B.E.A. Saleh, M.C. Teich, Fundamentals of Photonics, 3rd edn. (Wiley, 2019)
11. T.P. Lee, Effects of junction capacitance on the rise time of LEDs and the turn-on delay of
injection lasers. Bell Sys. Tech. J. 54, 53–68 (1975)
12. M.N. Zervas, Chap. 1, Advances in fiber distributed-feedback lasers, in Optical Fiber Telecommunications Vol. VIA: Components and Subsystems, ed. by I. Kaminow, T. Li, A.E. Willner
(Academic Press, 2013)
13. E.O. Odoh, A.S. Njapba, A review of semiconductor quantum well devices. Adv. Physics
Theories Appl. 46, 26–32 (2015)
14. R. Michalzik, VCSELs: Fundamentals, Technology and Applications of Vertical-Cavity
Surface-Emitting Lasers (Springer 2013)
15. C.C. Shen et al., Design, modeling, and fabrication of high-speed VCSEL with data rate up to
50 Gb/s. Nanoscale Res. Lett. 14, 276 (2019)
16. M. Mohsin, D. Schall, M. Otto, A. Noculak, D. Neumaier, H. Kurz, Graphene based low
insertion loss electroabsorption modulator on SOI waveguide. Opt. Express, 22(12), 15292–
15297 (2014)
17. M. He et al., High-performance hybrid silicon and lithium niobate Mach-Zehnder modulators
for 100 Gb/s and beyond. Nat. Photon. 13(5), 359–364 (2019)
18. W. Zhu, Y. Deng, Y. Wang, A. Wang, Finite element analysis of miniature thermoelectric
coolers with high cooling performance and short response time. Microelectron. J. 44, 860–868
(2013)
4 Light Sources for Fiber Links
5. B.L. Anderson, R.L. Anderson, Fundamentals of Semiconductor Devices, 2 nd edn. (McGrawHill, 2018)
6. S.O. Kasap, Principles of Electronic Materials and Devices, 4th edn. (McGraw-Hill, 2018)
7. J.J. Coleman, A.C. Bryce, C. Jagadish (eds.) Advances in Semiconductor Lasers (Academic
Press, 2012)
8. S. Adachi, III–V ternary and quaternary compounds, Chap. 1, in Springer Handbook of
Electronic and Photonic Materials, ed. by S. Kasap, P. Capper (Springer 2017)
9. C.A. Burrus, B.I. Miller, Small-area double heterostructure AlGaAs electroluminescent diode
sources for optical fiber transmission lines. Opt. Commun. 4, 307–309 (1971)
10. B.E.A. Saleh, M.C. Teich, Fundamentals of Photonics, 3rd edn. (Wiley, 2019)
11. T.P. Lee, Effects of junction capacitance on the rise time of LEDs and the turn-on delay of
injection lasers. Bell Sys. Tech. J. 54, 53–68 (1975)
12. M.N. Zervas, Chap. 1, Advances in fiber distributed-feedback lasers, in Optical Fiber Telecommunications Vol. VIA: Components and Subsystems, ed. by I. Kaminow, T. Li, A.E. Willner
(Academic Press, 2013)
13. E.O. Odoh, A.S. Njapba, A review of semiconductor quantum well devices. Adv. Physics
Theories Appl. 46, 26–32 (2015)
14. R. Michalzik, VCSELs: Fundamentals, Technology and Applications of Vertical-Cavity
Surface-Emitting Lasers (Springer 2013)
15. C.C. Shen et al., Design, modeling, and fabrication of high-speed VCSEL with data rate up to
50 Gb/s. Nanoscale Res. Lett. 14, 276 (2019)
16. M. Mohsin, D. Schall, M. Otto, A. Noculak, D. Neumaier, H. Kurz, Graphene based low
insertion loss electroabsorption modulator on SOI waveguide. Opt. Express, 22(12), 15292–
15297 (2014)
17. M. He et al., High-performance hybrid silicon and lithium niobate Mach-Zehnder modulators
for 100 Gb/s and beyond. Nat. Photon. 13(5), 359–364 (2019)
18. W. Zhu, Y. Deng, Y. Wang, A. Wang, Finite element analysis of miniature thermoelectric
coolers with high cooling performance and short response time. Microelectron. J. 44, 860–868
(2013)
