We have designed a common-mode interferometric acousto-optic pulse shaper that is capable of shaping individual pulses differently from a mode-locked laser. The design enables the measurement of weak nonlinear optical signals such as two-photon absorption and self-phase modulation at megahertz rates. The experimental apparatus incorporates homodyne detection as a means of resolving the phase of the detected signals. The fast data acquisition rate and the ability to perform measurements in scattering media make this experimental apparatus amenable to imaging applications analogous to measurements of two-photon fluorescence using a mode-locked laser
We propose a very fast heterodyne technique to recover the amplitude and phase of short optical puls...
We propose and demonstrate a simple method for the full characterization of an ultrashort optical pu...
Thesis (Ph. D.)--University of Rochester. College of Engineering and Applied Science. Institute of O...
We have designed a common-mode interferometric acousto-optic pulse shaper that is capable of shaping...
We demonstrate all-optical modulation and ultrafast detection using an on-resonance optical gain med...
We demonstrate all-optical modulation and ultrafast detection using an on-resonance optical gain med...
We demonstrate all-optical modulation and ultrafast detection using an on-resonance optical gain med...
Self-mixing optical coherent detection is a non-contact measurement technique which provides accurat...
The nonlinear optical response of a material system contains detailed information about its electron...
We present a new method for the measurement of the phase of ultrashort optical pulses with high spec...
We demonstrate that a pulse shaper is able to simultaneously act as an optical waveform generator an...
International audienceWe propose a very fast heterodyne technique to recover the amplitude and phase...
In this thesis, the possibility of integrating linear pulse shapers into various all-optical signal ...
With the aim to determine the spectral phase of an optical pulse, we develop a new method based on t...
In this thesis, the possibility of integrating linear pulse shapers into various all-optical signal ...
We propose a very fast heterodyne technique to recover the amplitude and phase of short optical puls...
We propose and demonstrate a simple method for the full characterization of an ultrashort optical pu...
Thesis (Ph. D.)--University of Rochester. College of Engineering and Applied Science. Institute of O...
We have designed a common-mode interferometric acousto-optic pulse shaper that is capable of shaping...
We demonstrate all-optical modulation and ultrafast detection using an on-resonance optical gain med...
We demonstrate all-optical modulation and ultrafast detection using an on-resonance optical gain med...
We demonstrate all-optical modulation and ultrafast detection using an on-resonance optical gain med...
Self-mixing optical coherent detection is a non-contact measurement technique which provides accurat...
The nonlinear optical response of a material system contains detailed information about its electron...
We present a new method for the measurement of the phase of ultrashort optical pulses with high spec...
We demonstrate that a pulse shaper is able to simultaneously act as an optical waveform generator an...
International audienceWe propose a very fast heterodyne technique to recover the amplitude and phase...
In this thesis, the possibility of integrating linear pulse shapers into various all-optical signal ...
With the aim to determine the spectral phase of an optical pulse, we develop a new method based on t...
In this thesis, the possibility of integrating linear pulse shapers into various all-optical signal ...
We propose a very fast heterodyne technique to recover the amplitude and phase of short optical puls...
We propose and demonstrate a simple method for the full characterization of an ultrashort optical pu...
Thesis (Ph. D.)--University of Rochester. College of Engineering and Applied Science. Institute of O...