High-link-gain RF photonic bandpass filter enabled by Si3N4 rings for sideband filtering and carrier suppression

Y. Liu*, M. Zhu, M. Merklein, O.F.P. Daulay, David Marpaung, B.J. Eggleton

*Corresponding author for this work

Research output: Chapter in Book/Report/Conference proceedingConference contributionAcademicpeer-review

Abstract

We report a microwave photonic bandpass filter with high radio-frequency (RF) gain of 1.8 dB and a passband bandwidth of 260 MHz, enabled by cascaded integrated Si3N4 rings for sideband filtering and carrier-to-sideband ratio tuning.
Original languageEnglish
Title of host publicationProceedings Asia Communications and Photonics Conference (ACPC) 2019
PublisherOSA Technical Digest
ISBN (Electronic) 978-1-943580-70-5
Publication statusPublished - 2019
Event Asia Communications and Photonics Conference, ACP 2019 - Chengdu, China
Duration: 2 Nov 20195 Nov 2019

Conference

Conference Asia Communications and Photonics Conference, ACP 2019
Abbreviated titleACP 2019
CountryChina
CityChengdu
Period2/11/195/11/19

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bandpass filters
sidebands
radio frequencies
retarding
photonics
rings
tuning
bandwidth
microwaves

Cite this

Liu, Y., Zhu, M., Merklein, M., Daulay, O. F. P., Marpaung, D., & Eggleton, B. J. (2019). High-link-gain RF photonic bandpass filter enabled by Si3N4 rings for sideband filtering and carrier suppression. In Proceedings Asia Communications and Photonics Conference (ACPC) 2019 [S3E.3] OSA Technical Digest.
Liu, Y. ; Zhu, M. ; Merklein, M. ; Daulay, O.F.P. ; Marpaung, David ; Eggleton, B.J. / High-link-gain RF photonic bandpass filter enabled by Si3N4 rings for sideband filtering and carrier suppression. Proceedings Asia Communications and Photonics Conference (ACPC) 2019. OSA Technical Digest, 2019.
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abstract = "We report a microwave photonic bandpass filter with high radio-frequency (RF) gain of 1.8 dB and a passband bandwidth of 260 MHz, enabled by cascaded integrated Si3N4 rings for sideband filtering and carrier-to-sideband ratio tuning.",
author = "Y. Liu and M. Zhu and M. Merklein and O.F.P. Daulay and David Marpaung and B.J. Eggleton",
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Liu, Y, Zhu, M, Merklein, M, Daulay, OFP, Marpaung, D & Eggleton, BJ 2019, High-link-gain RF photonic bandpass filter enabled by Si3N4 rings for sideband filtering and carrier suppression. in Proceedings Asia Communications and Photonics Conference (ACPC) 2019., S3E.3, OSA Technical Digest, Asia Communications and Photonics Conference, ACP 2019, Chengdu, China, 2/11/19.

High-link-gain RF photonic bandpass filter enabled by Si3N4 rings for sideband filtering and carrier suppression. / Liu, Y.; Zhu, M.; Merklein, M.; Daulay, O.F.P.; Marpaung, David; Eggleton, B.J.

Proceedings Asia Communications and Photonics Conference (ACPC) 2019. OSA Technical Digest, 2019. S3E.3.

Research output: Chapter in Book/Report/Conference proceedingConference contributionAcademicpeer-review

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T1 - High-link-gain RF photonic bandpass filter enabled by Si3N4 rings for sideband filtering and carrier suppression

AU - Liu, Y.

AU - Zhu, M.

AU - Merklein, M.

AU - Daulay, O.F.P.

AU - Marpaung, David

AU - Eggleton, B.J.

PY - 2019

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AB - We report a microwave photonic bandpass filter with high radio-frequency (RF) gain of 1.8 dB and a passband bandwidth of 260 MHz, enabled by cascaded integrated Si3N4 rings for sideband filtering and carrier-to-sideband ratio tuning.

M3 - Conference contribution

BT - Proceedings Asia Communications and Photonics Conference (ACPC) 2019

PB - OSA Technical Digest

ER -

Liu Y, Zhu M, Merklein M, Daulay OFP, Marpaung D, Eggleton BJ. High-link-gain RF photonic bandpass filter enabled by Si3N4 rings for sideband filtering and carrier suppression. In Proceedings Asia Communications and Photonics Conference (ACPC) 2019. OSA Technical Digest. 2019. S3E.3