Silicon Photonics III: Systems and Applications by Lorenzo Pavesi, David J. Lockwood

By Lorenzo Pavesi, David J. Lockwood

This publication is quantity III of a chain of books on silicon photonics. It reviews at the improvement of absolutely built-in platforms the place many alternative photonics part are built-in jointly to construct advanced circuits. this is often the demonstration of the absolutely potentiality of silicon photonics. It encompasses a variety of chapters written by means of engineers and scientists of the most businesses, study facilities and universities lively within the box. it may be of use for all these individuals to grasp the prospects and the new purposes of silicon photonics either in microelectronics, telecommunication and shopper electronics market.

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Silicon Photonics III: Systems and Applications

This ebook is quantity III of a chain of books on silicon photonics. It stories at the improvement of totally built-in platforms the place many alternative photonics part are built-in jointly to construct advanced circuits. this is often the demonstration of the totally potentiality of silicon photonics. It encompasses a variety of chapters written via engineers and scientists of the most businesses, examine facilities and universities energetic within the box.

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104, 041104-1–-4 (2014) 32. K. Tanabe, T. Rae, K. Watanabe, Y. 3 μm InAs/GaAs quantum dot lasers on Si substrates fabricated by wafer bonding. Appl. Phys. Express 6, 082703-1-4 (2013) 33. T. Baba, S. Akiyama, M. Imai, N. Hirayama, H. Takahashi, Y. Noguchi, T. Horikawa, T. Usuki, 50-Gb/s ring-resonator-based silicon modulator. Opt. Express 21, 11869–11876 (2013) 34. K. F. Logan, T. J. P. Knights, K. Bergman, Wavelength locking and thermally stabilizing microring resonators using dithering signals.

H. Cho, Low-voltage high-performance silicon photonic devices and photonic integrated circuits operating up to 30 Gb/s. Opt. Express 19, 26936–26947 (2011) 12. Y. Arakawa, T. Nakamura, Y. Urino, T. Fujita, Silicon photonics for next generation system integration platform. IEEE Commun. Mag. 51, 72–77 (2013) 13. E. Camacho-Aguilera, Y. Cai, N. T. Bessette, M. C. Kimerling, J. Michel, An electrically pumped germanium laser. Opt. Express 20, 11316–11320 (2012) 14. D. pdf 15. N. Sysak, H. W. E. Bowers, R.

The measured coupling losses between the LDs and trident SSCs with various alignment deviations in the horizontal and vertical directions are plotted in 12 Y. Urino et al. Fig. 9 Schematic structure and scanning electron microscope images of trident spot-size converters Fig. 10 Measured characteristics of trident spot-size converters (SSCs). a Coupling losses of trident SSCs and conventional inversed taper SSCs with various tip widths. b Alignment tolerance between laser diodes and trident SSCs in horizontal and vertical directions Fig.

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