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Publications
For the complete list of publications, please check my
Google Scholar Profile 🎓
2025
K. Soroush,
et al.
Post-processed estimation of quantum state trajectories.
arXiv preprint
, arXiv:2510.16754 (2025).
B. Hua,
et al.
Towards entangling distant solid state spin qubits via mechanical resonators.
SMT
, 2025.
J. Gao,
et al.
From Pixels to Camera: Scaling Superconducting Nanowire Single-Photon Detectors for Imaging at the Quantum-Limit.
Nano Convergence
, 12.1 (2025): 49.
Z. Li,
et al.
Heterogeneous integration of silicon nitride and amorphous silicon carbide photonics.
APL Photonics
, 10.10 (2025).
W. Ji,
et al.
Compact Metasurface Terahertz Spectrometer.
Laser & Photonics Reviews
, 19.3, 2025: 2401290.
S Groeblacher,
et al.
Broadband, Low-mass, and High-reflectivity Metasurface-Enhanced Photonic Crystal Reflector
Patent
B. Rodriguez,
et al.
Magic Silicon Dioxide for Widely Tunable Photonic Integrated Circuits.
ACS Photonics
, 2025.
2024
I.E. Zadeh,
et al.
Superconducting Electronic Signal Output Circuit and Readout Array.
US Patent
, 18/706,522, 2024.
W. Ji,
et al.
Compact terahertz spectrometer based on a metasurface.
Millimeter, Submillimeter, and Far-Infrared Detectors and Instrumentation for Astronomy XII
, SPIE, 2024.
B. Lopez-Rodriguez,
et al.
Magic silicon dioxide for widely tunable integrated photonics.
arXiv preprint arXiv:2407.08480
, 2024.
B. Lopez-Rodriguez,
et al.
Large, deterministic and tunable thermo-optic shift for all photonic platforms.
Integrated Photonics Platforms III
, Vol. 13012, SPIE, 2024.
J. W. Los,
et al.
High-performance photon number resolving detectors for 850–950 nm wavelength range.
APL Photonics
, 9.6, 2024.
J. Chang,
et al.
Broadband, High-Reflectivity Dielectric Mirrors at Wafer Scale: Combining Photonic Crystal and Metasurface Architectures for Advanced Lightsails.
Nano Letters
, 2024.
F. Fung,
et al.
Towards a Programmable Spin-Mechanics Platform with Dynamic Qubit Transport.
Bulletin of the American Physical Society
, 2024.
2023
T. Hummel,
et al.
Gated-and optical biasing for SNSPDs.
Frontiers in Optics
, Optica Publishing Group, 2023.
B. Lopez-Rodriguez,
et al.
High-quality amorphous silicon carbide for hybrid photonic integration deposited at a low temperature.
ACS Photonics
, 10.10, 2023, pp. 3748-3754.
W. Ji,
et al.
Compact Metasurface Terahertz Spectrometer.
arXiv preprint arXiv:2309.02341
, 2023.
J. Guo,
et al.
Active-feedback quantum control of an integrated low-frequency mechanical resonator.
Nature Communications
, 14.1, 2023, p. 4721.
W. Ji,
et al.
Recent advances in metasurface design and quantum optics applications with machine learning, physics-informed neural networks, and topology optimization methods.
Light: Science & Applications
, 12.1, 2023, p. 169.
J. Chang,
et al.
Superconducting single-photon detectors get hot.
Nature Nanotechnology
, 18.4, 2023, pp. 322-323.
J. Chang,
et al.
Nanowire-based integrated photonics for quantum information and quantum sensing.
Nanophotonics
, 12.3, 2023, pp. 339-358.
F. Fung,
et al.
Towards a high cooperativity spin-mechanical system with NV centers and high-Q silicon nitride nanobeams.
APS Division of Atomic, Molecular and Optical Physics Meeting Abstracts
, Vol. 2023, 2023.
2022
T. Hummel,
et al.
Nanosecond gating of superconducting nanowire single-photon detectors using cryogenic bias circuitry.
Optics Express
, 31.1, 2022, pp. 610-625.
J. Jia,
et al.
Effects of SiC content on the mechanical and thermophysical properties of 3D Cf/SiC–Al composites.
Ceramics International
, 48.14, 2022, pp. 20571-20578.
B. Lopez-Rodriguez,
et al.
Ultra-high system detection efficiency superconducting nanowire single-photon detectors for quantum photonics and life sciences.
CLEO: Applications and Technology
, Optica Publishing Group, 2022.
J. Chang,
et al.
Efficient mid-infrared single-photon detection using superconducting NbTiN nanowires with high time resolution in a Gifford-McMahon cryocooler.
Photonics Research
, 10.4, 2022, pp. 1063-1070.
2021
Y. Gan,
et al.
Low noise MgB2 hot electron bolometer mixer operated at 5.3 THz and at 20 K.
Applied Physics Letters
, 119.20, 2021.
I. Esmaeil Zadeh,
et al.
Superconducting nanowire single-photon detectors: A perspective on evolution, state-of-the-art, future developments, and applications.
Applied Physics Letters
, 118.19, 2021.
J. Chang,
et al.
Detecting telecom single photons with 99.5− 2.07+ 0.5% system detection efficiency and high time resolution.
APL Photonics
, 6.3, 2021.
J. Chang
Detecting Single Photons with Superconducting Nanowires.
2021.
2020
S. Steinhauer,
et al.
Superconducting Nanowire Devices for Light Detection at the Single-Photon Level.
Proceedings
, Vol. 60, No. 1, MDPI, 2020.
C. Cirillo,
et al.
Superconducting nanowire single photon detectors based on disordered NbRe films.
Applied Physics Letters
, 117.17, 2020.
I. Esmaeil Zadeh,
et al.
Efficient single-photon detection with 7.7 ps time resolution for photon-correlation measurements.
ACS Photonics
, 7.7, 2020, pp. 1780-1787.
I. Esmaeil Zadeh,
et al.
PIZZICATO: Picosecond Scintillator Timing with Superconducting Nanowire Single-Photon Detectors.
2020.
2019
J. Chang,
et al.
Multimode-fiber-coupled superconducting nanowire single-photon detectors with high detection efficiency and time resolution.
Applied Optics
, 58.36, 2019, pp. 9803-9807.
J. Zichi,
et al.
Optimizing the stoichiometry of ultrathin NbTiN films for high-performance superconducting nanowire single-photon detectors.
Optics Express
, 27.19, 2019, pp. 26579-26587.
R. Gourgues,
et al.
Superconducting nanowire single photon detectors operating at temperature from 4 to 7 K.
Optics Express
, 27.17, 2019, pp. 24601-24609.
J. Jia,
et al.
Effect of tungsten based coating characteristics on microstructure and thermal conductivity of diamond/Cu composites prepared by pressueless infiltration.
Ceramics International
, 45.8, 2019, pp. 10810-10818.
J. Chang,
et al.
Large diameter superconducting nanowire single photon detectors with high efficiency and high time resolution.
Quantum Optics and Photon Counting 2019
, Vol. 11027, SPIE, 2019.
J. Chang,
et al.
Superconducting nanowire single photon detector with high efficiency and time resolution for multimode fiber coupling.
CLEO: QELS_Fundamental Science
, FF1A.2, 2019/5/5.