Low crosstalk design of an optical matrix switch using phase-change material

Takumi Moriyama, Daiki Tanaka, Paridhi Jain, Hiroyuki Tsuda

Research output: Chapter in Book/Report/Conference proceedingConference contribution

1 Citation (Scopus)

Abstract

A crossbar type optical matrix switch using phase-change material was designed to have low crosstalk. The crosstalk of less than -49.1 dB was achieved for a 4×4 matrix switch by adjusting a unit switch structure.

Original languageEnglish
Title of host publicationOptics InfoBase Conference Papers
Publication statusPublished - 2013
EventIntegrated Photonics Research, Silicon and Nanophotonics, IPRSN 2013 - Rio Grande, Puerto Rico
Duration: 2013 Jul 142013 Jul 17

Other

OtherIntegrated Photonics Research, Silicon and Nanophotonics, IPRSN 2013
CountryPuerto Rico
CityRio Grande
Period13/7/1413/7/17

Fingerprint

phase change materials
Phase change materials
Crosstalk
crosstalk
switches
Switches
matrices
adjusting

ASJC Scopus subject areas

  • Instrumentation
  • Atomic and Molecular Physics, and Optics

Cite this

Moriyama, T., Tanaka, D., Jain, P., & Tsuda, H. (2013). Low crosstalk design of an optical matrix switch using phase-change material. In Optics InfoBase Conference Papers

Low crosstalk design of an optical matrix switch using phase-change material. / Moriyama, Takumi; Tanaka, Daiki; Jain, Paridhi; Tsuda, Hiroyuki.

Optics InfoBase Conference Papers. 2013.

Research output: Chapter in Book/Report/Conference proceedingConference contribution

Moriyama, T, Tanaka, D, Jain, P & Tsuda, H 2013, Low crosstalk design of an optical matrix switch using phase-change material. in Optics InfoBase Conference Papers. Integrated Photonics Research, Silicon and Nanophotonics, IPRSN 2013, Rio Grande, Puerto Rico, 13/7/14.
Moriyama T, Tanaka D, Jain P, Tsuda H. Low crosstalk design of an optical matrix switch using phase-change material. In Optics InfoBase Conference Papers. 2013
Moriyama, Takumi ; Tanaka, Daiki ; Jain, Paridhi ; Tsuda, Hiroyuki. / Low crosstalk design of an optical matrix switch using phase-change material. Optics InfoBase Conference Papers. 2013.
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