Energy complexity of optical computations

The paper provides lower bounds on the energy consumption and demonstrates an energy-time trade-off in optical computations. All the lower bounds are shown to have the matching upper bounds for a transitive function-shifting. Since the energy consumption in an optical transmission is a nonlinear fun...

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Published in:Parallel and Distributed Processing, 2nd IEEE Symposium On pp. 14 - 21
Main Authors: Tyagi, A., Reif, J.
Format: Conference Proceeding
Language:English
Published: IEEE Comput. Soc. Press 1990
Subjects:
ISBN:0818620870, 9780818620874
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Abstract The paper provides lower bounds on the energy consumption and demonstrates an energy-time trade-off in optical computations. All the lower bounds are shown to have the matching upper bounds for a transitive function-shifting. Since the energy consumption in an optical transmission is a nonlinear function of the distance, a new setof techniques was required to derive these lower bounds. It also characterizes the energy requirements of 3-D VLSI computations.< >
AbstractList The paper provides lower bounds on the energy consumption and demonstrates an energy-time trade-off in optical computations. All the lower bounds are shown to have the matching upper bounds for a transitive function-shifting. Since the energy consumption in an optical transmission is a nonlinear function of the distance, a new setof techniques was required to derive these lower bounds. It also characterizes the energy requirements of 3-D VLSI computations.< >
Author Reif, J.
Tyagi, A.
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Snippet The paper provides lower bounds on the energy consumption and demonstrates an energy-time trade-off in optical computations. All the lower bounds are shown to...
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StartPage 14
SubjectTerms Computer science
Contracts
Costs
Energy consumption
Military computing
Nonlinear optics
Optical computing
Switches
Upper bound
Very large scale integration
Title Energy complexity of optical computations
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