This paper describes an experimental investigation of the operation at 1.5 ?m of an electrically driven thermo-optic Si Fabry-Peort modulator which achieves upto 55% intensity modulation depth. Design of optimal integrated devices is simulated by 3-D numerical analysis using a numerical code, and operating frequencies of hundreds of kHz unaffected by temperature fluctuations, are predicted.

All-silicon Fabry-Perot modulator based on the thermo-optic effect

Iodice;Mario;Rendina;Ivo
1994

Abstract

This paper describes an experimental investigation of the operation at 1.5 ?m of an electrically driven thermo-optic Si Fabry-Peort modulator which achieves upto 55% intensity modulation depth. Design of optimal integrated devices is simulated by 3-D numerical analysis using a numerical code, and operating frequencies of hundreds of kHz unaffected by temperature fluctuations, are predicted.
1994
Design
Integrated optics
Numerical methods
Optics
Thermal effects
Fabry Perot modulator
Microelectronic technology
Short interferometric cavity device
Thermo-optic effect
Light modulators
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/219818
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