Area of research
Atomic and Molecular Physics, and Optics · Electrical and Electronic Engineering
Research interest
Research interests include Advanced Fiber Laser Technologies, Photonic and Optical Devices, Advanced Frequency and Time Standards, and Laser-Matter Interactions and Applications.
Searching for GEMS: The Occurrence of Giant Planets Orbiting M Dwarfs within 100 pc
Phase-Dependent Squeezing in Dual-Comb Interferometry
Low-noise microwaves from free-running frequency combs and electrical feed-forward phase noise compensation
Spectroscopic characterization of LOFAR radio-emitting M dwarfs
Gaia-4b and 5b: Radial Velocity Confirmation of Gaia Astrometric Orbital Solutions Reveal a Massive Planet and a Brown Dwarf Orbiting Low-mass Stars
Gaia-4b and 5b: Radial Velocity Confirmation of Gaia Astrometric Orbital Solutions Reveal a Massive Planet and a Brown Dwarf Orbiting Low-mass Stars
Harnessing micro-Fabry–Pérot reference cavities in photonic integrated circuits
Squeezed dual-comb spectroscopy.
Quantification of broadband chromatic drifts in Fabry–Pérot resonators for exoplanet science
Searching for GEMS: TOI-5688 A b, a Low-density Giant Orbiting a High-metallicity Early M-dwarf*
Searching for GEMS: Two Super-Jupiters Around M Dwarfs that May have Formed via Gravitational Instability
Searching for GEMS: TOI-7149 b, an Inflated Giant Planet Causing a 12% Transit of a Fully Convective M-dwarf
Searching for GEMS: Discovery and Characterization of Two Brown Dwarfs Around M Dwarfs*
Jitter Across 15 yr: Leveraging Precise Photometry from Kepler and TESS to Extract Exoplanets from Radial Velocity Time Series
Dual laser self-injection locking to a micro Fabry–Perot for low phase noise millimeter-wave generation
Searching for GEMS: Confirmation of TOI-5573 b, a Cool, Saturn-like Planet Orbiting an M Dwarf<sup>*</sup>
Discovery of a Nearby Habitable Zone Super-Earth Candidate Amenable to Direct Imaging
Dynamic spectral tailoring of a 10 GHz laser frequency comb for enhanced calibration of astronomical spectrographs.
Frequency-comb-calibrated Laser Heterodyne Radiometry for Precision Radial Velocity Measurements.
Ultralow noise microwaves with free-running frequency combs and electrical feedforward
Soft x-ray high-harmonic generation in an anti-resonant hollow core fiber driven by a 3
<i>μ</i>
m ultrafast laser
<i>Searching for GEMS</i>
: TOI-5349 b is a Saturn-like Planet Orbiting a Metal-rich Early M Dwarf
Visible-to-ultraviolet frequency comb generation in lithium niobate nanophotonic waveguides
Photonic chip-based low-noise microwave oscillator.
GHz repetition rate mid-infrared frequency comb spectroscopy of fast chemical reactions
GHz repetition rate mid-infrared frequency comb spectroscopy of fast chemical reactions
Photonic millimeter-wave generation beyond the cavity thermal limit
Ultrastable vacuum-gap Fabry–Perot cavities operated in air
Low-noise microwave generation with an air-gap optical reference cavity
Searching for GEMS: Characterizing Six Giant Planets Around Cool Dwarfs
Research Infrastructure: Mid-scale RI-1 (M1:IP): The National Quantum Nanofab
Collaborative Research: A reliable electro-optic astrocomb with 350-1000 nm coverage enabled by nonlinear nanophotonics
QuSeC-TAQS: Improving Geodesy and Gravitational Sensing with Quantum Sensors of Time
Conference: Mid-scale RI-EW: Workshop on Building a Nanofabrication Facility for Quantum Science and Engineering
Collaborative Research: An Agile Electro-Optic Frequency Comb for Precision Near-Infrared Radial Velocity Spectroscopy with the Habitable Zone Planet Finder
Collaborative Research: Turnkey Laser Frequency Comb for the Calibrator for the Habitable Zone Planet Finder