7 papers
Ultra-Low-Noise Brillouin Hybrid Synthetic Laser for Sub-Hertz Lattice Clock Spectroscopy
Meiting Song, Stefan Lannig, Dahyeon Lee +9
Frequency-stable lasers enable high-fidelity quantum state manipulation, which forms the basis of optical atomic clocks, quantum sensing, and quantum computation. Performing state…
A narrow-linewidth Brillouin laser for a two-photon rubidium frequency standard
Kyle W. Martin, River Beard, Andrei Isichenko +5
High precision portable and deployable frequency standards are required for modern navigation and communication technologies. Optical frequency standards are attractive for their i…
Blue to Near-IR Integrated PZT Silicon Nitride Modulators for Quantum and Atomic Applications
Nick Montifiore, Andrei Isichenko, Nitesh Chauhan +8
Modulation and control of lasers and optical signals is necessary for trapped-ion and cold neutral atom quantum systems. Given the diversity of atomic species, experimental modalit…
Sub-Doppler rubidium atom cooling using a programmable agile integrated PZT-on-SiN resonator
Andrei Isichenko, Steven Carpenter, Nick Montifiore +12
Programmability and precise control of laser frequency are essential for quantum experiments and applications such as atomic clocks, quantum computers, and cold-atom sensors. Curre…
Octave Spanning Visible to SWIR Integrated Coil-Stabilized Brillouin Lasers
Meiting Song, Nitesh Chauhan, Mark W. Harrington +7
Narrow linewidth stabilized lasers are central to precision applications that operate across the visible to short-wave infrared wavelengths, including optical clocks, quantum sensi…
Multi-laser stabilization with an atomic-disciplined photonic integrated resonator
Andrei Isichenko, Andrew S. Hunter, Nitesh Chauhan +8
Precision atomic and quantum experiments rely on ultra-stable narrow linewidth lasers constructed using table-top ultra-low expansion reference cavities. These experiments often re…