Silicon photonics technology is an enabler for the integration of complex circuits on a single chip, for various optical link applications such as routing, optical networks on chip, short range links and long haul transmitters. Quadrature Phase Shift Keying (QPSK) transmitters is one of the typical circuits that can be achieved using silicon photonics integrated circuits. The achievement of 25GBd QPSK transmitter modules requires several building blocks to be optimized: the pn junction used to build a BPSK (Binary Shift Phase Keying) modulator, the RF access and the optical interconnect at the package level. In this paper, we describe the various design steps of a BPSK module and the related tests that are needed at every stage of the fabrication process.
S. Bernabé, S. Olivier, A. Myko, M. Fournier, B. Blampey, A. Abraham, S. Menezo, J. Hauden, A. Mottet, K. Frigui, S. Ngoho, B. Frigui, S. Bila, D. Marris-Morini, D. Pérez-Galacho, P. Brindel, and G. Charlet, "High-speed coherent silicon modulator module using photonic integrated circuits: from circuit design to packaged module," Proc. SPIE 9891, Silicon Photonics and Photonic Integrated Circuits V, 98910Z (Presented at SPIE Photonics Europe: April 05, 2016; Published: 13 May 2016); https://doi.org/10.1117/12.2227411.
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Study of self-shadowing effect as a simple means to realize nanostructured thin films and layers with special attentions to birefringent obliquely deposited thin films and photo-luminescent porous silicon