Self-pulsing and chaos in distributed feedback bistable optical devices

We show that the light transmitted by a nonlinear distributed feedback structure can be steady (time independent), periodic, or chaotic depending on the intensity of the input cw beam. The feasibility of an experimental demonstration of such behavior is discussed.

Bibliographic Details
Published:
Online Access:http://hdl.handle.net/2047/d20000658
id ndltd-NEU--neu-330067
record_format oai_dc
spelling ndltd-NEU--neu-3300672016-04-25T16:13:52ZSelf-pulsing and chaos in distributed feedback bistable optical devicesWe show that the light transmitted by a nonlinear distributed feedback structure can be steady (time independent), periodic, or chaotic depending on the intensity of the input cw beam. The feasibility of an experimental demonstration of such behavior is discussed.http://hdl.handle.net/2047/d20000658
collection NDLTD
sources NDLTD
description We show that the light transmitted by a nonlinear distributed feedback structure can be steady (time independent), periodic, or chaotic depending on the intensity of the input cw beam. The feasibility of an experimental demonstration of such behavior is discussed.
title Self-pulsing and chaos in distributed feedback bistable optical devices
spellingShingle Self-pulsing and chaos in distributed feedback bistable optical devices
title_short Self-pulsing and chaos in distributed feedback bistable optical devices
title_full Self-pulsing and chaos in distributed feedback bistable optical devices
title_fullStr Self-pulsing and chaos in distributed feedback bistable optical devices
title_full_unstemmed Self-pulsing and chaos in distributed feedback bistable optical devices
title_sort self-pulsing and chaos in distributed feedback bistable optical devices
publishDate
url http://hdl.handle.net/2047/d20000658
_version_ 1718235603020021760