We report on the active stabilization of a Michelson interferometer at an arbitrary phase angle with a precision better than 1° at λ=632.8 nm, which corresponds to a precision in the optical path difference between the two arms of less than 1 nm. The stabilization method is ditherless, and the error signal is computed from the spatial shift of the interference pattern of a reference laser, measured in real-time with a CCD array detector. We discuss the usefulness of this method for nanopositioning, optical interferometry, and quantum optical experiments
We report an optoelectronic feedback loop that permits the active stabilization of an interferometri...
Simple systems and procedures based on personal computer hardware to analyze the fringe pattern in a...
We demonstrate novel modulation-free frequency locking of a diode laser, utilizing a simple Sagnac i...
AbstractIn this paper a reconfigured Michelson interferometer for high-resolution angle measurement ...
The measurement of nanometre displacements with picometre resolution has been made possible by a pha...
We report an optoelectronic feedback loop that permits the active stabilization of an interferometri...
Displacement measurement can be performed with high accuracy using phase-shifting method. In phase-s...
Abstract. The construction of a cheap but very stable and accurate Michelson interferometer is descr...
A new implementation of a Michelson interferometer capable of resolution on the order of 20 pm has b...
A Michelson interferometer based on an optical set-up allowing multiple reflection between two plane...
We present a computer-based active interferometer stabilization method that can be set to an arbitra...
Michelson interferometers allow phase measurements many orders of magnitude below the phase stabilit...
Coherent light is divided into a reference and a probing beam at a beam splitter. The reference mirr...
Michelson interferometers have been routinely used in various applications ranging from testing opti...
Thesis: S.M., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2014.Cata...
We report an optoelectronic feedback loop that permits the active stabilization of an interferometri...
Simple systems and procedures based on personal computer hardware to analyze the fringe pattern in a...
We demonstrate novel modulation-free frequency locking of a diode laser, utilizing a simple Sagnac i...
AbstractIn this paper a reconfigured Michelson interferometer for high-resolution angle measurement ...
The measurement of nanometre displacements with picometre resolution has been made possible by a pha...
We report an optoelectronic feedback loop that permits the active stabilization of an interferometri...
Displacement measurement can be performed with high accuracy using phase-shifting method. In phase-s...
Abstract. The construction of a cheap but very stable and accurate Michelson interferometer is descr...
A new implementation of a Michelson interferometer capable of resolution on the order of 20 pm has b...
A Michelson interferometer based on an optical set-up allowing multiple reflection between two plane...
We present a computer-based active interferometer stabilization method that can be set to an arbitra...
Michelson interferometers allow phase measurements many orders of magnitude below the phase stabilit...
Coherent light is divided into a reference and a probing beam at a beam splitter. The reference mirr...
Michelson interferometers have been routinely used in various applications ranging from testing opti...
Thesis: S.M., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2014.Cata...
We report an optoelectronic feedback loop that permits the active stabilization of an interferometri...
Simple systems and procedures based on personal computer hardware to analyze the fringe pattern in a...
We demonstrate novel modulation-free frequency locking of a diode laser, utilizing a simple Sagnac i...