ABSTRACT

This book covers device design fundamentals and system applications in optical MEMS and nanophotonics. Expert authors showcase examples of how fusion of nanoelectromechanical (NEMS) with nanophotonic elements is creating powerful new photonic devices and systems including MEMS micromirrors, MEMS tunable filters, MEMS-based adjustable lenses and apertures, NEMS-driven variable silicon nanowire waveguide couplers, and NEMS tunable photonic crystal nanocavities. The book also addresses system applications in laser scanning displays, endoscopic systems, space telescopes, optical telecommunication systems, and biomedical implantable systems.

  • Presents efforts to scale down mechanical and photonic elements into the nano regime for enhanced performance, faster operational speed, greater bandwidth, and higher level of integration.
  • Showcases the integration of MEMS and optical/photonic devices into real commercial products.
  • Addresses applications in optical telecommunication, sensing, imaging, and biomedical systems.

Prof. Vincent C. Lee is Associate Professor in the Department of Electrical and Computer Engineering, National University of Singapore.

Prof. Guangya Zhou is Associate Professor in the Department of Mechanical Engineering at National University of Singapore.

section I|214 pages

Optical MEMS for communication, imaging, and sensing applications

chapter 4|36 pages

Optical MEMS for space

Design, characterization, and applications

chapter 7|28 pages

Electrothermally actuated MEMS mirrors

Design, modeling, and applications

section II|130 pages

Nanophotonics for communication, imaging, and sensing applications

section III|79 pages

Biomicro- and nanophotonics and optofluidics for health care applications