We extend the concept "optical instanton" to arbitrary dielectric media. For these general cases the exact analytical approach is no longer available. We derive an approximate analytical solution that would be valid in the vicinity of the light cone. A comparison is made between the analytical and the numerical solutions.
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Kazuya HAYATA, Masanori KOSHIBA, "Quasi-Instanton Solution for Ultrashort Baseband Optical Signals" in IEICE TRANSACTIONS on Fundamentals,
vol. E76-A, no. 12, pp. 2059-2061, December 1993, doi: .
Abstract: We extend the concept "optical instanton" to arbitrary dielectric media. For these general cases the exact analytical approach is no longer available. We derive an approximate analytical solution that would be valid in the vicinity of the light cone. A comparison is made between the analytical and the numerical solutions.
URL: https://global.ieice.org/en_transactions/fundamentals/10.1587/e76-a_12_2059/_p
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@ARTICLE{e76-a_12_2059,
author={Kazuya HAYATA, Masanori KOSHIBA, },
journal={IEICE TRANSACTIONS on Fundamentals},
title={Quasi-Instanton Solution for Ultrashort Baseband Optical Signals},
year={1993},
volume={E76-A},
number={12},
pages={2059-2061},
abstract={We extend the concept "optical instanton" to arbitrary dielectric media. For these general cases the exact analytical approach is no longer available. We derive an approximate analytical solution that would be valid in the vicinity of the light cone. A comparison is made between the analytical and the numerical solutions.},
keywords={},
doi={},
ISSN={},
month={December},}
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TY - JOUR
TI - Quasi-Instanton Solution for Ultrashort Baseband Optical Signals
T2 - IEICE TRANSACTIONS on Fundamentals
SP - 2059
EP - 2061
AU - Kazuya HAYATA
AU - Masanori KOSHIBA
PY - 1993
DO -
JO - IEICE TRANSACTIONS on Fundamentals
SN -
VL - E76-A
IS - 12
JA - IEICE TRANSACTIONS on Fundamentals
Y1 - December 1993
AB - We extend the concept "optical instanton" to arbitrary dielectric media. For these general cases the exact analytical approach is no longer available. We derive an approximate analytical solution that would be valid in the vicinity of the light cone. A comparison is made between the analytical and the numerical solutions.
ER -