David J Richardson
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Explore the profile of David J Richardson including associated specialties, affiliations and a list of published articles.
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3621
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Recent Articles
11.
Ding M, Numkam Fokoua E, Hayes J, Sakr H, Horak P, Poletti F, et al.
Opt Lett
. 2023 May;
48(10):2772.
PMID: 37186762
In the original publication of our research article "Hollow core fiber Fabry-Perot interferometers with reduced sensitivity to temperature" [Opt. Lett.47, 2510 (2022)10.1364/OL.456589OPLEDP0146-9592], we identified an error that requires correction. The...
12.
Zhong A, Ding M, Dousek D, Suslov D, Zvanovec S, Poletti F, et al.
Opt Express
. 2023 May;
31(9):15035-15044.
PMID: 37157354
By modifying the interconnection design between standard single-mode fiber (SSMF) and nested antiresonant nodeless type hollow-core fiber (NANF), we create an air gap between SSMF and NANF. This air gap...
13.
Hong Y, Taengnoi N, Bottrill K, Wang Y, Sahu J, Petropoulos P, et al.
Opt Express
. 2023 May;
31(7):10978-10990.
PMID: 37155744
We implemented a bismuth-doped fiber amplifier (BDFA) based optical recirculating loop to investigate the performance of amplified O-band transmission over appreciable distances. Both single-wavelength and wavelength-division multiplexed (WDM) transmission were...
14.
Rajagopal S, Allen T, Berendt M, Lin D, Alam S, Richardson D, et al.
J Acoust Soc Am
. 2023 May;
153(5):2649.
PMID: 37129678
In this article, it is shown experimentally that a planar laser-generated ultrasound source with a hard reflective backing will generate higher acoustic pressures than a comparable source with an acoustically...
15.
Feng Z, Sakr H, Hayes J, Numkam Fokoua E, Ding M, Poletti F, et al.
Opt Lett
. 2023 Feb;
48(3):763-766.
PMID: 36723583
Optical fibers with a low thermal coefficient of delay (TCD) have been developed for frequency and timing transmission/distribution. However, their temperature sensitivity changes as a function of temperature and, to...
16.
Norman M, Edwards M, White G, Burton J, Butt J, Richardson D, et al.
mBio
. 2023 Jan;
14(1):e0258922.
PMID: 36645302
Many bacteria of the genus are facultative anaerobes able to reduce a broad range of soluble and insoluble substrates, including Fe(III) mineral oxides. Under anoxic conditions, the bacterium Shewanella oneidensis...
17.
Kelly T, Davidson I, Warren C, Brooks W, Foster M, Poletti F, et al.
Opt Express
. 2022 Dec;
30(24):43317-43329.
PMID: 36523032
We demonstrate recent progress in the development of a Raman gas sensor using a single cladding ring anti-resonant hollow core micro-structured optical fiber (HC-ARF) and a low power pump source....
18.
Suslov D, Numkam Fokoua E, Dousek D, Zhong A, Zvanovec S, Bradley T, et al.
Opt Express
. 2022 Oct;
30(20):37006-37014.
PMID: 36258619
We report simultaneous low coupling loss (below 0.2 dB at 1550 nm) and low back-reflection (below -60 dB in the 1200-1600 nm range) between a hollow core fiber and standard...
19.
Experimental demonstration of single-span 100-km O-band 4×50-Gb/s CWDM direct-detection transmission
Hong Y, Taengnoi N, Bottrill K, Thipparapu N, Wang Y, Sahu J, et al.
Opt Express
. 2022 Oct;
30(18):32189-32203.
PMID: 36242286
We report on what is to the best of our knowledge the longest 50-Gb/s/λ O-band wavelength-division multiplexed (WDM) transmission. A pair of in-house built bismuth-doped fiber amplifiers (BDFAs) and the...
20.
Slavik R, Numkam Fokoua E, Bradley T, Taranta A, Komanec M, Zvanovec S, et al.
Opt Express
. 2022 Oct;
30(17):31310-31321.
PMID: 36242216
Today's lowest-loss hollow core fibers are based on antiresonance guidance. They have been shown both theoretically and experimentally to have very low levels of backscattering arising from the fiber structure...