A large on/off ratio with low drive voltage optical modulation is realized by using waveguide InGaAs/InAlAs multiple quantum well (MQW) structures grown by molecular beam epitaxy (MBE). These waveguide MQW optical modulators have a modulation on/off ratio of 90:1 (19.5 dB) at a driving voltage as low as 2.5 V.
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Koichi WAKITA, Masashi NAKAO, Yuichi KAWAMURA, Hajime ASAHI, "High On/Off Ratio and Low Applied Voltage Optical Modulator Using Multiple Quantum Well Structures" in IEICE TRANSACTIONS on transactions,
vol. E70-E, no. 4, pp. 300-302, April 1987, doi: .
Abstract: A large on/off ratio with low drive voltage optical modulation is realized by using waveguide InGaAs/InAlAs multiple quantum well (MQW) structures grown by molecular beam epitaxy (MBE). These waveguide MQW optical modulators have a modulation on/off ratio of 90:1 (19.5 dB) at a driving voltage as low as 2.5 V.
URL: https://global.ieice.org/en_transactions/transactions/10.1587/e70-e_4_300/_p
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@ARTICLE{e70-e_4_300,
author={Koichi WAKITA, Masashi NAKAO, Yuichi KAWAMURA, Hajime ASAHI, },
journal={IEICE TRANSACTIONS on transactions},
title={High On/Off Ratio and Low Applied Voltage Optical Modulator Using Multiple Quantum Well Structures},
year={1987},
volume={E70-E},
number={4},
pages={300-302},
abstract={A large on/off ratio with low drive voltage optical modulation is realized by using waveguide InGaAs/InAlAs multiple quantum well (MQW) structures grown by molecular beam epitaxy (MBE). These waveguide MQW optical modulators have a modulation on/off ratio of 90:1 (19.5 dB) at a driving voltage as low as 2.5 V.},
keywords={},
doi={},
ISSN={},
month={April},}
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TY - JOUR
TI - High On/Off Ratio and Low Applied Voltage Optical Modulator Using Multiple Quantum Well Structures
T2 - IEICE TRANSACTIONS on transactions
SP - 300
EP - 302
AU - Koichi WAKITA
AU - Masashi NAKAO
AU - Yuichi KAWAMURA
AU - Hajime ASAHI
PY - 1987
DO -
JO - IEICE TRANSACTIONS on transactions
SN -
VL - E70-E
IS - 4
JA - IEICE TRANSACTIONS on transactions
Y1 - April 1987
AB - A large on/off ratio with low drive voltage optical modulation is realized by using waveguide InGaAs/InAlAs multiple quantum well (MQW) structures grown by molecular beam epitaxy (MBE). These waveguide MQW optical modulators have a modulation on/off ratio of 90:1 (19.5 dB) at a driving voltage as low as 2.5 V.
ER -