Wafer-scale fabrication of III-V integrated photonics for quantum networking and sensing
Galan Moody, Lillian Thiel, Joshua E. Castro, Paolo Pintus et autres
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Galan Moody, Lillian Thiel, Joshua E. Castro, Paolo Pintus et autres
Y. M. Pang, Joshua E. Castro, Trevor J. Steiner, Liao Duan et autres
Integrated photonic microresonators have become an essential resource for generating photonic qubits for quantum information processing, entanglement distribution and networking, and quantum communications. The pair-generation rate is enhanced by reducing the microresonator radius, but this comes at the cost of increasing the …
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Joshua E. Castro, Eber Nolasco-Martinez, Paolo Pintus, Zeyu Zhang et autres
In the past decade, remarkable advances in integrated photonic technologies have enabled table-top experiments and instrumentation to be scaled down to compact chips with significant reduction in size, weight, power consumption, and cost. Here, we demonstrate an integrated continuously tunable laser in …
us, it (code pays fourni par la source)
Samuel E. Fontaine, Colin Vendromin, Trevor J. Steiner, Amirali Atrli et autres
We explore how III-V semiconductor microring resonators can efficiently generate photon pairs and squeezed vacuum states via spontaneous parametric down-conversion by utilizing their built-in quasi-phase-matching and modal dispersion. We present an analytic expression for the biphoton wave function of photon pairs generated …
ca, us, it (code pays fourni par la source)
Y. M. Pang, Joshua E. Castro, Trevor J. Steiner, Liao Duan et autres
We report an AlGaAs microresonator array enabling dense multiplexing of high-rate 1550 nm entangled-pair sources. Time-bin and frequency-bin qubits are generated with pair generation efficiency up to 2.6 GHz/mW2 per resonator.
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Y. M. Pang, Joshua E. Castro, Trevor J. Steiner, Liao Duan et autres
Integrated photonic microresonators have become an essential resource for generating photonic qubits for quantum information processing, entanglement distribution and networking, and quantum communications. The pair generation rate is enhanced by reducing the microresonator radius, but this comes at the cost of increasing …
Liao Duan, Trevor J. Steiner, Paolo Pintus, Lillian Thiel et autres
Correlated photon-pair sources are key components for quantum computing, networking, synchronization, and sensing applications. Integrated photonics has enabled chip-scale sources using nonlinear processes, producing high-rate time-energy and polarization entanglement at telecom wavelengths with sub-100 microwatt pump power. Many quantum systems operate in …
us, it (code pays fourni par la source)
Lillian Thiel, Joshua E. Castro, Trevor J. Steiner, Catherine Nguyen et autres
The development of manufacturable and scalable integrated nonlinear photonic materials is driving key technologies in diverse areas, such as high-speed communications, signal processing, sensing, and quantum information. Here, we demonstrate a nonlinear platform—InGaP-on-insulator—optimized for visible-to-telecommunication wavelength χ(2) nonlinear optical processes. In this …
us (code pays fourni par la source)
Joshua E. Castro, Eber Nolasco-Martinez, Paolo Pintus, Zeyu Zhang et autres
In the last decade, remarkable advances in integrated photonic technologies have enabled table-top experiments and instrumentation to be scaled down to compact chips with significant reduction in size, weight, power consumption, and cost. Here, we demonstrate an integrated continuously tunable laser in …
Liao Duan, Trevor J. Steiner, Paolo Pintus, Lillian Thiel et autres
Correlated photon-pair sources are key components for quantum computing, networking, and sensing applications. Integrated photonics has enabled chip-scale sources using nonlinear processes, producing high-rate entanglement with sub-100 microwatt power at telecom wavelengths. Many quantum systems operate in the visible or near-infrared ranges, …
Lillian Thiel, Joshua E. Castro, Trevor J. Steiner, Catherine Nguyen et autres
The development of manufacturable and scalable integrated nonlinear photonic materials is driving key technologies in diverse areas such as high-speed communications, signal processing, sensing, and quantum information. Here, we demonstrate a novel nonlinear platform -- InGaP-on-insulator -- optimized for visible-to-telecommunication wavelength $χ^{\left(2\right)}$ …
Joshua E. Castro, Eber Nolasco-Martinez, Paolo Pintus, Zeyu Zhang et autres
We present III-V-on-Si3N4 chip-scale lasers operating from 765-795 nm with < 5 kHz intrinsic linewidth and > 100 GHz mode-hop-free tuning. We demonstrate their application for nonlinear photonics with Si3N4 microring resonators, atomic spectroscopy, and locking to 87Rb.
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