Peter Devore
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Peter Devore Email & Phone Number

RF Photonics and Fiber Optic Systems Engineer at Lawrence Livermore National Laboratory
Location: Livermore, California, United States 8 work roles 2 schools
1 work email found @ucla.edu LinkedIn matched
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Role
RF Photonics and Fiber Optic Systems Engineer
Location
Livermore, California, United States
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Peter Devore is listed as RF Photonics and Fiber Optic Systems Engineer at Lawrence Livermore National Laboratory, a with 9495 employees, based in Livermore, California, United States. AeroLeads shows a work email signal at ucla.edu and a matched LinkedIn profile for Peter Devore.

Peter Devore previously worked as RF Photonics/Fiber Optic Systems Engineer at Lawrence Livermore National Laboratory and Postdoctoral Research Scientist at Lawrence Livermore National Laboratory. Peter Devore holds Doctor Of Philosophy (Ph.D.), Physics; Engineering - Photonics from Ucla.

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{first_initial}{last}@ucla.edu
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About Peter Devore

Researching next-generation RF photonics applications of interest to DOE, NNSA and Lawrence Livermore National Laboratory.Completed Ph.D. in Physics under Prof. Bahram Jalali, a pioneer of silicon photonics as well as the discoverer of optical rogue waves, inventor of the world's fastest real-time cameras (STEAM and FIRE) and spectrometers (ADFT), and inventor of the highest performance (8 ENOB) 10 GHz ADC (TSADC).Specialties: * Simulation of generalized Nonlinear Schrodinger Equation (GNLSE) for pulse propagation chi3 materials (e.g. silica fiber and silicon); multiphysics FEM (using e.g. COMSOL); and pulse propagation in chi2 materials (e.g. optical parametric amplification).* Experimental free-space and fiber optics. Nonlinear photonics, on-chip photonics (silicon photonics), full-field optical pulse characterization, fiber/free-space spectral/temporal interferometry, microscopy, and imaging. Signal processing and data analysis.

Listed skills include Photonics, Simulations, Signal Processing, Numerical Analysis, and 22 others.

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Lawrence Livermore National Laboratory
Lawrence Livermore National Laboratory
RF Photonics and Fiber Optic Systems Engineer
Livermore, CA, US
Website
Employees
9495
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8 roles

Peter Devore work experience

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Rf Photonics/Fiber Optic Systems Engineer

Lawrence Livermore National Laboratory

Engineering DirectorateMaterials Engineering DivisionUltrafast Optics and Electronics Systems Group- Study and develop advanced RF/photonic technologies for various communications, diagnostic, and sensing applications.- Implementation of experiments and/or perform end-to-end modeling of novel system designs.- Collaborate with other team members in the design, implementation, and verification of RF/photonic systems.- Work closely with engineers, technicians, and integration experts from LLNL and its sponsors in all aspects of system development.

Postdoctoral Research Scientist

Lawrence Livermore National Laboratory

Engineering DirectorateMaterials Engineering DivisionUltrafast Optics and Electronics Systems Group- Study and develop advanced RF/photonic technologies for various communications, diagnostic, and sensing applications.- Implementation of experiments and/or perform end-to-end modeling of novel system designs.- Collaborate with other team members in the design, implementation, and verification of RF/photonic systems.- Work closely with engineers, technicians, and integration experts from LLNL and its sponsors in all aspects of system development.

Sep 2014 - Mar 2017

Research Assistant

Los Angeles, Ca, Us

Researching new methods to deal with the toughest problems in photonics, including:* The modulator is the bottleneck of optical communications. Inspired by stimulating rogue waves to stabilize generation of nonlinearly broadened light, we have devised a new way to both reduce the modulator drive voltage and increase the modulator bandwidth -- by stimulating modulation instability using the electrooptically generated sidebands of the modulator (see "Enhancing electrooptic modulators using modulation instability" below).* Nanophotonic silicon waveguides are excellent nonlinear optical hosts, with nonlinear strength over 100,000 times that of ordinary silica fibers. However, they suffer from strong nonlinear loss, due to strong two-photon absorption and free carrier absorption. By stimulating the generation of new wavelengths with a weak seed, we have simultaneously improved broadening, stability and coherence of this light (see "Stimulated supercontinuum generation extends broadening limits in silicon" below).Experience:* Nonlinear optical simulations in both silica and silicon and photonic device simulation coded from scratch, using MATLAB. Photonic device simulation with COMSOL.* Free-space optical setups (including construction of a confocal microscope from scratch, Michelson interferometer, and coupling into and out of silicon nanophotonic waveguides).* Fiber optical setups (including supercontinuum generation, chirped pulse amplifiers, and optical full-field measurement systems).

Jul 2008 - Sep 2014

Associate Technical Staff

El Segundo, California, Us

Researching next generation photonic systems and building company expertise in advanced photonic technologies:* Electronic analog-to-digital converters (ADC) exhibit a trade-off between bandwidth and number of bits, and the product of the two has advanced very slowly. The photonic time-stretch analog-to-digital converter uses photonics to slow the electronic signal in time, reducing the electronic bandwidth and enabling use of a slower but much higher resolution electronic ADC. We performed the first measurement of the distortion-free range of a photonic time-stretch ADC, an important metric for ADCs (see "Spurious-Free dynamic range of a high-resolution photonic time-stretch analog-to-digital converter system").Experience:* Simulation of photonic devices with imperfections coded from scratch, using MATLAB and Python. Photonic device simulation with COMSOL.* Fiber optical setups (including optical links).

Jun 2011 - Nov 2012

Web Programmer

Berkeley, Ca, Us

Expanded capabilities of web app for maintaining and using in-house museum data. Verbally and through email communicated with users and addressed their needs.http://arctos.database.museum/SpecimenSearch.cfm

Jun 2007 - May 2008

Research Assistant

Berkeley, Ca, Us

Jointly investigated properties of photomultiplier tubes.Aided in designing and executing tests.Independently wrote data acquisition applications.http://dayabay.ihep.ac.cn/twiki/bin/view/Public/

Dec 2006 - May 2008
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2 education records

Peter Devore education

Doctor Of Philosophy (Ph.D.), Physics; Engineering - Photonics

Ucla

B.A., Physics

University Of California, Berkeley
FAQ

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What company does Peter Devore work for?

Peter Devore works for Lawrence Livermore National Laboratory.

What is Peter Devore's role at Lawrence Livermore National Laboratory?

Peter Devore is listed as RF Photonics and Fiber Optic Systems Engineer at Lawrence Livermore National Laboratory.

What is Peter Devore's email address?

AeroLeads has found 1 work email signal at @ucla.edu for Peter Devore at Lawrence Livermore National Laboratory.

Where is Peter Devore based?

Peter Devore is based in Livermore, California, United States while working with Lawrence Livermore National Laboratory.

What companies has Peter Devore worked for?

Peter Devore has worked for Lawrence Livermore National Laboratory, Ucla, The Aerospace Corporation, and Uc Berkeley.

Who are Peter Devore's colleagues at Lawrence Livermore National Laboratory?

Peter Devore's colleagues at Lawrence Livermore National Laboratory include Jeremy Gardner, Janie Philips, Nicholas Verduzco, Jason Godfrey, and Steven Davis.

How can I contact Peter Devore?

You can use AeroLeads to view verified contact signals for Peter Devore at Lawrence Livermore National Laboratory, including work email, phone, and LinkedIn data when available.

What schools did Peter Devore attend?

Peter Devore holds Doctor Of Philosophy (Ph.D.), Physics; Engineering - Photonics from Ucla.

What skills is Peter Devore known for?

Peter Devore is listed with skills including Photonics, Simulations, Signal Processing, Numerical Analysis, Optics, Physics, Simulation, and Research.

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