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Colleagues (2 hidden)

Communicate

Details

Name Jean-Claude Diels
Groups STC.UNM
Locations New Mexico, United States
Related Organizations:
Department None
Title None
Website None
 

Projects

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Project Active Bidirectional Mode-Locked Laser for Accurate Measurements in Navigation System of Vehicles

Researchers at University of New Mexico have developed a novel mechanism to measure both absolute and

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Primary: STC.UNM
Date posted: Jan 4, 2011
Project Scanning Phase Intracavity Nanoscope

An optical instrument based on making differential measurements on the phase of two circulating ultrashort

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Primary: STC.UNM
Date posted: Jan 10, 2011
Project Auto-Stabilization of Lasers By Means of Resonant Structures

The invention pertains to the stabilization of lasers in general, and mode-locked lasers in particular

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Primary: STC.UNM
Date posted: Jan 23, 2015
Project Femtosecond Communication

Time multiplexing is proposed in an integrated optics approach, at the traditional wavelength of the

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Primary: STC.UNM
Date posted: Jan 11, 2011
Project Fourier Moire Wavefront Sensor

The present invention uses the Fourier transforming properties of a lens to optically compute the wavefront

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Primary: STC.UNM
Date posted: Jan 11, 2011
Project Frequency Comb of Large Spacing for Astronomy

This invention utilizes an active (laser) cavity rather than a passive Fabry-Perot cavity to multiplex a pulse

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Primary: STC.UNM
Date posted: Mar 24, 2014
Project RF Self-Regenerated Harmonically Locked Optical Oscillator

The present invention can provide solutions to problems of synchronization, even if the repetition rate

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Primary: STC.UNM
Date posted: Jan 20, 2011
Project Bi-Directional Short Pulse Ring Laser

For the measurement of rotation, and as compared to the existing laser gyro used for

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Primary: STC.UNM
Date posted: Jun 3, 2011
Project Multi Comb Generation with a Mode Locked Laser Cavity

Systems and methods for providing fine control of ultrashort laser pulse trains, using a Fabry-Perot etalon

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Primary: STC.UNM
Date posted: Feb 7, 2014
Project Gregorian Optical System with Non-Linear Optical Technology for Protection Against Intense Optical Transients

This technology consists of a Gregorian telescope augmented by a non-linear optical system comprising a concave primary mirror

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Primary: STC.UNM
Date posted: Jul 16, 2012

Publications