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Silicon Photonic MEMS : Exploiting Mechanics at the Nanoscale to Enhance Photonic Integrated Circuits

Authors :
Quack, Niels
Sattari, Hamed
Takabayashi, Alain Y.
Zhang, Yu
Edinger, Pierre
Errando-Herranz, Carlos
Gylfason, Kristinn
Wang, Xiaojing
Niklaus, Frank
Jezzini, Moises A.
Hwang, How Yuan
O'Brien, Peter
Porcel, Marco A. G.
Arce, Cristina Lerma
Kumar, Saurav
Abasahl, Banafsheh
Verheyen, Peter
Bogaerts, Wim
Quack, Niels
Sattari, Hamed
Takabayashi, Alain Y.
Zhang, Yu
Edinger, Pierre
Errando-Herranz, Carlos
Gylfason, Kristinn
Wang, Xiaojing
Niklaus, Frank
Jezzini, Moises A.
Hwang, How Yuan
O'Brien, Peter
Porcel, Marco A. G.
Arce, Cristina Lerma
Kumar, Saurav
Abasahl, Banafsheh
Verheyen, Peter
Bogaerts, Wim
Publication Year :
2019

Abstract

With the maturing and the increasing complexity of Silicon Photonics technology, novel avenues are pursued to reduce power consumption and to provide enhanced functionality: exploiting mechanical movement in advanced Silicon Photonic Integrated Circuits provides a promising path to access a strong modulation of the effective index and to low power consumption by employing mechanically stable and thus non-volatile states. In this paper, we will discuss recent achievements in the development of MEMS enabled systems in Silicon Photonics and outline the roadmap towards reconfigurable general Photonic Integrated Circuits.<br />QC 20200313

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1235097603
Document Type :
Electronic Resource
Full Text :
https://doi.org/10.1364.ofc.2019.m2d.3