2005IEEE Photonics Technology LettersRequires access

An opto-VLSI reconfigurable broad-band optical splitter

Jessica Zheng, Zhenglin Wang, Kamal Alameh, W. A. Crossland

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Abstract

A reconfigurable broad-band optical splitter is presented, which uses the multicasting capability of opto-very-large-scale-integrated (Opto-VLSI) technology to adaptively split an optical signal to N fiber ports. We demonstrate the proof-of-principle of a three-port structure that uses a reconfigurable Opto-VLSI processor to adaptively multicast an input optical signal with dynamic attenuation range of more than 25 dB over 55-nm bandwidth.

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What this paper is about

A reconfigurable broad-band optical splitter is presented, which uses the multicasting capability of opto-very-large-scale-integrated (Opto-VLSI) technology to adaptively split an optical signal to N fiber ports. We demonstrate the proof-of-principle of a three-port structure that uses a reconfigurable Opto-VLSI processor to adaptively multicast an input optical signal with dynamic attenuation range of more than 25 dB over 55-nm bandwidth.

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Available abstract

A reconfigurable broad-band optical splitter is presented, which uses the multicasting capability of opto-very-large-scale-integrated (Opto-VLSI) technology to adaptively split an optical signal to N fiber ports. We demonstrate the proof-of-principle of a three-port structure that uses a reconfigurable Opto-VLSI processor to adaptively multicast an input optical signal with dynamic attenuation range of more than 25 dB over 55-nm bandwidth.

Key concepts: Splitter, Very-large-scale integration, Fiber optic splitter, Computer science, Bandwidth (computing), Optical cross-connect, Multicast, Optical performance monitoring

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