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Title: Optical NAND gate

Patent ·
OSTI ID:1025609

An optical NAND gate is formed from two pair of optical waveguide devices on a substrate, with each pair of the optical waveguide devices consisting of an electroabsorption modulator and a photodetector. One pair of the optical waveguide devices is electrically connected in parallel to operate as an optical AND gate; and the other pair of the optical waveguide devices is connected in series to operate as an optical NOT gate (i.e. an optical inverter). The optical NAND gate utilizes two digital optical inputs and a continuous light input to provide a NAND function output. The optical NAND gate can be formed from III-V compound semiconductor layers which are epitaxially deposited on a III-V compound semiconductor substrate, and operates at a wavelength in the range of 0.8-2.0 .mu.m.

Research Organization:
Sandia National Laboratories (SNL), Albuquerque, NM, and Livermore, CA (United States)
Sponsoring Organization:
USDOE
DOE Contract Number:
AC04-94AL85000
Assignee:
Sandia Corporation (Albuquerque, NM)
Patent Number(s):
7,995,877
Application Number:
12/182,683
OSTI ID:
1025609
Country of Publication:
United States
Language:
English

References (7)

Monolithically integrated active components: a quantum-well intermixing approach journal March 2005
The quantum well self-electrooptic effect device: Optoelectronic bistability and oscillation, and self-linearized modulation journal September 1985
40-Gb/s Widely Tunable Transceivers journal January 2007
500 Gbit∕s optical gate monolithically integrating photodiode and electroabsorption modulator journal January 2004
Design and Demonstration of Novel QW Intermixing Scheme for the Integration of UTC-Type Photodiodes With QW-Based Components journal February 2006
100-gb/s error-free wavelength conversion with a monolithic optical gate integrating a photodiode and electroabsorption modulator journal November 2005
2.3 picoseconds optical gate monolithically integrating photodiode and electroabsorption modulator journal January 2001

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