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Douglas Trotter

Explore the profile of Douglas Trotter including associated specialties, affiliations and a list of published articles. Areas
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Articles 8
Citations 31
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Recent Articles
1.
Kodigala A, Gehl M, Hoth G, Lee J, DeRose C, Pomerene A, et al.
Sci Adv . 2024 Jul; 10(28):eade4454. PMID: 38985861
The laser system is the most complex component of a light-pulse atom interferometer (LPAI), controlling frequencies and intensities of multiple laser beams to configure quantum gravity and inertial sensors. Its...
2.
Gehl M, Kindel W, Karl N, Orozco A, Musick K, Trotter D, et al.
Opt Express . 2021 May; 29(9):13129-13140. PMID: 33985054
We demonstrate an optical waveguide device, capable of supporting the high, in-vacuum, optical power necessary for trapping a single atom or a cold atom ensemble with evanescent fields. Our photonic...
3.
Boynton N, Gehl M, Dallo C, Pomerene A, Starbuck A, Hood D, et al.
Opt Express . 2020 Nov; 28(23):35192-35201. PMID: 33182970
Passive silicon photonic waveguides are exposed to gamma radiation to understand how the performance of silicon photonic integrated circuits is affected in harsh environments such as space or high energy...
4.
Hoffman G, Dallo C, Starbuck A, Hood D, Pomerene A, Trotter D, et al.
Opt Express . 2019 Sep; 27(17):24765-24780. PMID: 31510360
We derive an adjoint shape optimization algorithm with a compound figure of merit and demonstrate its use with both gradient descent and Levenberg-Marquart updates for the case of SiO-buried SOI...
5.
Weigel P, Zhao J, Fang K, Al-Rubaye H, Trotter D, Hood D, et al.
Opt Express . 2018 Sep; 26(18):23728-23739. PMID: 30184869
We demonstrate an ultra-high-bandwidth Mach-Zehnder electro-optic modulator (EOM), based on foundry-fabricated silicon (Si) photonics, made using conventional lithography and wafer-scale fabrication, oxide-bonded at 200C to a lithium niobate (LN) thin...
6.
Wang X, Aguinaldo R, Lentine A, DeRose C, Starbuck A, Trotter D, et al.
Opt Express . 2016 Dec; 24(24):27600-27613. PMID: 27906331
A two-part silicon photonic variable optical attenuator is demonstrated in a compact footprint which can provide a high extinction ratio at wavelengths between 1520 nm and 1620 nm. The device...
7.
Wang X, Lentine A, DeRose C, Starbuck A, Trotter D, Pomerene A, et al.
Opt Express . 2016 Nov; 24(20):23081-23093. PMID: 27828374
Tunable silicon microring resonators with small, integrated micro-heaters which exhibit a junction field effect were made using a conventional silicon-on-insulator (SOI) photonic foundry fabrication process. The design of the resistive...
8.
Trotter D
J Am Board Fam Pract . 2002 Dec; 15(6):510; author reply 510-1. PMID: 12463303
No abstract available.