Zobrazeno 1 - 10
of 36
pro vyhledávání: '"Dave Kharas"'
Autor:
Dave Kharas, Jason J. Plant, William Loh, Reuel B. Swint, Suraj Bramhavar, Christopher Heidelberger, Siva Yegnanarayanan, Paul W. Juodawlkis
Publikováno v:
IEEE Photonics Journal, Vol 12, Iss 6, Pp 1-12 (2020)
We demonstrate a high-power on-chip 1550-nm laser implemented by passive flip-chip integration of a curved-channel, double-pass InGaAsP/InP slab-coupled optical waveguide amplifier (SCOWA) onto a photonic integrated circuit (PIC) containing a silicon
Externí odkaz:
https://doaj.org/article/e0fc32f4191a4a1799d3a1151bc6e58d
Autor:
Gavin N. West, William Loh, Dave Kharas, Cheryl Sorace-Agaskar, Karan K. Mehta, Jeremy Sage, John Chiaverini, Rajeev J. Ram
Publikováno v:
APL Photonics, Vol 4, Iss 2, Pp 026101-026101-7 (2019)
We present a low-loss integrated photonics platform in the visible and near ultraviolet (UV) regime. Fully etched waveguides based on atomic layer deposition (ALD) of aluminum oxide operate in a single transverse mode with
Externí odkaz:
https://doaj.org/article/629a9e07f4864cee85edb155c3a643ab
Autor:
Robert McConnell, David Reens, Michael Collins, Joseph Ciampi, Dave Kharas, Brian Aull, Kevan Donlon, Colin D. Bruzewicz, Bradley Felton, Jules Stuart, Robert Niffenegger, Philip Rich, Danielle Braje, Kevin Ryu, John Chiaverini
Publikováno v:
Quantum Sensing, Imaging, and Precision Metrology.
Autor:
William Loh, Dave Kharas, Ryan Maxson, Gavin N. West, Alexander Medeiros, Danielle Braje, Paul W. Juodawlkis, Robert McConnell
Publikováno v:
2022 IEEE Photonics Conference (IPC).
Publikováno v:
2022 IEEE MTT-S International Conference on Microwave Acoustics and Mechanics (IC-MAM).
Autor:
Siddhartha Ghosh, Siva Yegnanarayanan, Dave Kharas, Matthew Ricci, Jason J. Plant, Paul W. Juodawlkis
Publikováno v:
Optics Express. 31:12005
Silicon nitride (Si3N4) is a versatile waveguide material platform for CMOS foundry-based photonic integrated circuits (PICs) with low loss and high-power handling. The range of applications enabled by this platform is significantly expanded with the
Autor:
Christopher Heidelberger, Jason J. Plant, Paul W. Juodawlkis, Siva Yegnanarayanan, Suraj Bramhavar, Reuel B. Swint, William Loh, Dave Kharas
Publikováno v:
IEEE Photonics Journal, Vol 12, Iss 6, Pp 1-12 (2020)
We demonstrate a high-power on-chip 1550-nm laser implemented by passive flip-chip integration of a curved-channel, double-pass InGaAsP/InP slab-coupled optical waveguide amplifier (SCOWA) onto a photonic integrated circuit (PIC) containing a silicon
Autor:
David Reens, Michael Collins, Joseph Ciampi, Dave Kharas, Brian F. Aull, Kevan Donlon, Colin D. Bruzewicz, Bradley Felton, Jules Stuart, Robert J. Niffenegger, Philip Rich, Danielle Braje, Kevin K. Ryu, John Chiaverini, Robert McConnell
Integrated technologies greatly enhance the prospects for practical quantum information processing and sensing devices based on trapped ions. High-speed and high-fidelity ion state readout is critical for any such application. Integrated detectors of
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::e796690f0d91a42a506fa3d708f8ccb6
Autor:
Ian Christen, Hamza Raniwala, Marco Colangelo, Kevin Chen, Lorenzo De Santis Linsen Li, Yixuan Song, Carlos Errando-Herranz, Isaac Harris, Eric Bersin Madison Sutula, Karl Berggren, Matt Trusheim, Dirk Englund, P. Ben Dixon, Xingyu Zhang, Katia Shtyrkova Dave Kharas, Ryan Murphy, Scott Hamilton
Publikováno v:
Quantum 2.0 Conference and Exhibition.
We demonstrate a scalable integrated photonics platform operating at 1.3 K as an efficient microwave and optical interface for quantum memories based on tin-vacancy color centers in diamond.
Autor:
P. Ben Dixon, Ryan Murphy, Matt Grein, W. John Nowak, John Cummings, Dave Kharas, Xingyu Zhang, Katia Shtyrkova, Scott Hamilton, Ian Christen, Linsen Li, Eric Bersin, Madison Sutula, Dirk Englund
Publikováno v:
Quantum 2.0 Conference and Exhibition.
We report on the engineering of a multi-qubit silicon-vacancy-based quantum memory module suitable for quantum networking over optical channels.