Advanced Photonics Congress

26 July 2021 – 30 July 2021
Optica Virtual Event - Eastern Daylight/Summer Time (UTC - 04:00)

Advances in Integration Platforms I (ITu3A)

Presider: Michael Menard, UQAM
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18:00 - 18:30
(UTC - 04:00)

Integrated Lithium Niobate Photonics (ITu3A.1)
Presenter: Marko Loncar, Harvard University

Title to be provided

Authors:Marko Loncar, Harvard University

18:30 - 19:00
(UTC - 04:00)

Ultra-High Refractive Index Polymers in the Visible Wavelength for Nanoimprint Lithography (ITu3A.2)
Presenter: Keiko Munechika, HighRI Optics, Inc.

HighRI Optics develops nanoimprintable organic polymers with a high refractive index, up to 1.90, enabling advanced photonic applications. We will show a range of high refractive index formulations and advanced optical applications using nanoimprint lithography.

Authors:Keiko Munechika, HighRI Optics, Inc.

19:00 - 19:30
(UTC - 04:00)

CMOS-Compatible Silicon Nitride Waveguide on Silicon Photonics Platform (ITu3A.3)
Presenter: Yuriko Maegami, National Institute of Advanced Industrial Science and Technology

We present applications of a CMOS-compatible SiN waveguide to an ultralow-loss fiber coupling structure and a Si-to-SiN waveguide on a Si photonics platform for C-band infrared light. We also evaluate waveguide properties for visible light.

Authors:Yuriko Maegami, National Institute of Advanced Industrial Science and Technology / Makoto Okano, National Institute of Advanced Industrial Science and Technology / Guangwei Cong, National Institute of Advanced Industrial Science and Technology / Keijiro Suzuki, National Institute of Advanced Industrial Science and Technology / Morifumi Ohno, National Institute of Advanced Industrial Science and Technology / Toshihiro Narushima, National Institute of Advanced Industrial Science and Technology / Nobuyuki Yokoyama, National Institute of Advanced Industrial Science and Technology / Miyoshi Seki, National Institute of Advanced Industrial Science and Technology / Shigeru Saitou, National Institute of Advanced Industrial Science and Technology / Minoru Ohtsuka, National Institute of Advanced Industrial Science and Technology / Hitoshi Kawashima, National Institute of Advanced Industrial Science and Technology / Koji Yamada, National Institute of Advanced Industrial Science and Technology

  Paper

19:30 - 19:45
(UTC - 04:00)

8×25 Gb/s DWDM Transmitter Demonstration on a Heterogeneous Silicon Photonic Platform (ITu3A.4)
Presenter: Sudharsanan Srinivasan, Hewlett Packard Enterprise Co

A DWDM transmitter with aggregated bandwidth of 200 Gb/s is demonstrated using a comb laser and microring modulator fabricated on the same heterogeneous silicon platform, paving the way for a fully integrated transceiver.

Authors:Sudharsanan Srinivasan, Hewlett Packard Enterprise Co / Di Liang, Hewlett Packard Enterprise Co / geza kurczveil, Hewlett Packard Enterprise Co / Bassem Tossoun, Hewlett Packard Enterprise Co / antoine descos, Hewlett Packard Enterprise Co / Raymond Beausoleil, Hewlett Packard Enterprise Co

  Paper

19:45 - 20:00
(UTC - 04:00)

Towards Low Propagation Losses in Active Photonic Multi-Project Wafer Runs (ITu3A.5)
Presenter: Lewis Carpenter, State University of New York Polytechnic Institute

AIM Photonics has developed a new lower loss active MPW integration and has demonstrated losses of 1.0dB/cm and 0.48dB/cm for Si/SiN strip waveguides. We will present opto-electro test data from a range of active devices.

Authors:Lewis Carpenter, State University of New York Polytechnic Institute / Matthew Niekerk, Rochester Institute of Technology / Amir Begović, Rensselaer Polytechnic Institute / Vijay Sundaram, Rochester Institute of Technology / Venkatesh Deenadayalan, Rochester Institute of Technology / Thomas Palone, Rochester Institute of Technology / Michael Fanto, Air Force Research Laboratory Information Directorate / Stefan Preble, Rochester Institute of Technology / Christopher Baiocco, State University of New York Polytechnic Institute / Gerald Leake, State University of New York Polytechnic Institute / Nicholas Fahrenkopf, State University of New York Polytechnic Institute / David Harane, State University of New York Polytechnic Institute

  Paper