Dispersion tailoring of a crystalline whispering gallery mode microcavity for a wide-spanning optical Kerr frequency comb

We fabricated a crystalline whispering gallery mode microcavity by using a computer-controlled ultraprecision cutting process to control the cavity cross section. We used a numerical simulation to show that a wide-spanning optical Kerr frequency comb is generated by tailoring the dispersion of a cry...

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Veröffentlicht in:Journal of the Optical Society of America. B, Optical physics Optical physics, 2016-09, Vol.33 (9), p.1913-1920
Hauptverfasser: Nakagawa, Yosuke, Mizumoto, Yuta, Kato, Takumi, Kobatake, Tomoya, Itobe, Hiroki, Kakinuma, Yasuhiro, Tanabe, Takasumi
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container_end_page 1920
container_issue 9
container_start_page 1913
container_title Journal of the Optical Society of America. B, Optical physics
container_volume 33
creator Nakagawa, Yosuke
Mizumoto, Yuta
Kato, Takumi
Kobatake, Tomoya
Itobe, Hiroki
Kakinuma, Yasuhiro
Tanabe, Takasumi
description We fabricated a crystalline whispering gallery mode microcavity by using a computer-controlled ultraprecision cutting process to control the cavity cross section. We used a numerical simulation to show that a wide-spanning optical Kerr frequency comb is generated by tailoring the dispersion of a crystalline whispering gallery mode microcavity. To control the dispersion, we designed the cross-sectional shape of the device and fabricated it by using ultraprecision cutting. Both the measured value and the numerical result show that the microcavity has an anomalous dispersion over one octave.
doi_str_mv 10.1364/JOSAB.33.001913
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source OSA_美国光学学会数据库1
subjects Cross sections
Crystal structure
Cutting
Dispersion
Holes
Mathematical models
Microcavities
Whispering gallery modes
title Dispersion tailoring of a crystalline whispering gallery mode microcavity for a wide-spanning optical Kerr frequency comb
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