Well-controlled yet practical systems that give access to interference effects are critical for established and new functionalities in ultrafast signal processing, quantum photonics, optical coherence characterization, etc. Optical fiber systems constitute a central platform for such technologies. However, harnessing optical interference in a versatile and stable manner remains technologically costly and challenging. Here, degrees of freedom native to optical fibers, i.e., polarization and frequency, are used to demonstrate an easily deployable technique for the retrieval and stabilization of the relative phase in fiber interferometric systems. The scheme gives access (without intricate device isolation) to <1.3 × 10−3 π rad error signal...
A fiber optic interferometer utilizes a low coherence light emitting diode (LED) laser as a light so...
A novel system has been developed that can capture the wide- field interference pattern generated by...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Computer...
Well‐controlled yet practical systems that give access to interference effects are critical for esta...
A scheme for fiber interferometers, exploiting frequency-multiplexing in orthogonal fiber polarizati...
Frequency dissemination over optical fiber links relies on measuring the phase of fiber-delivered la...
We report an optoelectronic feedback loop that permits the active stabilization of an interferometri...
Measurement of the absolute phase of ultrashort optical pulses in real-time is crucial for various a...
We present an experimental realization of a robust quantum communication scheme [Phys. Rev. Lett. 93...
Long-term phase drifts of less than a femtosecond per hour have been demonstrated in a 2 km length o...
A novel signal processing technique using sinusoidal optical frequency modulation of an inexpensive ...
A one-way quantum key distribution scheme based on intrinsically stable Faraday-mirror type Michelso...
Abstract: We propose and experimentally demonstrate a simple approach to realize a phase-sensitive c...
Laser frequency combs emit a spectrum with hundreds of thousands of evenly spaced phase-coherent nar...
We demonstrate a two-photon interference experiment for phase coherent biphoton frequency combs (BFC...
A fiber optic interferometer utilizes a low coherence light emitting diode (LED) laser as a light so...
A novel system has been developed that can capture the wide- field interference pattern generated by...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Computer...
Well‐controlled yet practical systems that give access to interference effects are critical for esta...
A scheme for fiber interferometers, exploiting frequency-multiplexing in orthogonal fiber polarizati...
Frequency dissemination over optical fiber links relies on measuring the phase of fiber-delivered la...
We report an optoelectronic feedback loop that permits the active stabilization of an interferometri...
Measurement of the absolute phase of ultrashort optical pulses in real-time is crucial for various a...
We present an experimental realization of a robust quantum communication scheme [Phys. Rev. Lett. 93...
Long-term phase drifts of less than a femtosecond per hour have been demonstrated in a 2 km length o...
A novel signal processing technique using sinusoidal optical frequency modulation of an inexpensive ...
A one-way quantum key distribution scheme based on intrinsically stable Faraday-mirror type Michelso...
Abstract: We propose and experimentally demonstrate a simple approach to realize a phase-sensitive c...
Laser frequency combs emit a spectrum with hundreds of thousands of evenly spaced phase-coherent nar...
We demonstrate a two-photon interference experiment for phase coherent biphoton frequency combs (BFC...
A fiber optic interferometer utilizes a low coherence light emitting diode (LED) laser as a light so...
A novel system has been developed that can capture the wide- field interference pattern generated by...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Computer...