Matthew Seaberg
Overview
Explore the profile of Matthew Seaberg including associated specialties, affiliations and a list of published articles.
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Articles
16
Citations
325
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0
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Recent Articles
1.
Bogacz I, Makita H, Simon P, Zhang M, Doyle M, Chatterjee R, et al.
Pure Appl Chem
. 2023 Nov;
95(8):891-897.
PMID: 38013689
X-ray crystallography and X-ray spectroscopy using X-ray free electron lasers plays an important role in understanding the interplay of structural changes in the protein and the chemical changes at the...
2.
Li K, Zhou G, Liu Y, Wu J, Lin M, Cheng X, et al.
Nat Commun
. 2023 Nov;
14(1):7183.
PMID: 37935675
Knowledge of x-ray free electron lasers' (XFELs) pulse characteristics delivered to a sample is crucial for ensuring high-quality x-rays for scientific experiments. XFELs' self-amplified spontaneous emission process causes spatial and...
3.
Dresselhaus-Marais L, Kozioziemski B, Holstad T, Raeder T, Seaberg M, Nam D, et al.
Sci Rep
. 2023 Oct;
13(1):17573.
PMID: 37845245
The structures, strain fields, and defect distributions in solid materials underlie the mechanical and physical properties across numerous applications. Many modern microstructural microscopy tools characterize crystal grains, domains and defects...
4.
Holstad T, Dresselhaus-Marais L, Raeder T, Kozioziemski B, van Driel T, Seaberg M, et al.
Proc Natl Acad Sci U S A
. 2023 Sep;
120(39):e2307049120.
PMID: 37725646
The dynamics of lattice vibrations govern many material processes, such as acoustic wave propagation, displacive phase transitions, and ballistic thermal transport. The maximum velocity of these processes and their effects...
5.
Kurta R, van Driel T, Dohn A, Berberich T, Nelson S, Zaluzhnyy I, et al.
Phys Chem Chem Phys
. 2023 Jul;
25(35):23417-23434.
PMID: 37486006
We apply ultrashort X-ray laser pulses to track optically excited structural dynamics of [Ir(dimen)] molecules in solution. In our exploratory study we determine angular correlations in the scattered X-rays, which...
6.
Zhang L, Seaberg M, Yavas H
J Synchrotron Radiat
. 2023 Jun;
30(Pt 4):686-694.
PMID: 37318369
The wavefront preservation of coherent X-ray free-electron laser beams is pushing the requirement on the quality and performance of X-ray optics to an unprecedented level. The Strehl ratio can be...
7.
Chitturi S, Burdet N, Nashed Y, Ratner D, Mishra A, Lane T, et al.
Struct Dyn
. 2022 Oct;
9(5):054302.
PMID: 36276194
X-ray free electron laser experiments have brought unique capabilities and opened new directions in research, such as creating new states of matter or directly measuring atomic motion. One such area...
8.
Adam V, Hadjidemetriou K, Jensen N, Shoeman R, Woodhouse J, Aquila A, et al.
Chemphyschem
. 2022 Aug;
23(19):e202200192.
PMID: 35959919
Reversibly photoswitchable fluorescent proteins are essential markers for advanced biological imaging, and optimization of their photophysical properties underlies improved performance and novel applications. Here we establish a link between photoswitching...
9.
Wavefront preserving and high efficiency diamond grating beam splitter for x-ray free electron laser
Li K, Liu Y, Seaberg M, Chollet M, Weiss T, Sakdinawat A
Opt Express
. 2020 May;
28(8):10939-10950.
PMID: 32403615
X-ray free electron lasers (XFELs) provide femtosecond high-power x-ray beams with high spatial coherence, resulting in numerous influential discoveries. Diffractive optics allow for the easy manipulation and measurement of an...
10.
Liu Y, Seaberg M, Feng Y, Li K, Ding Y, Marcus G, et al.
J Synchrotron Radiat
. 2020 Mar;
27(Pt 2):254-261.
PMID: 32153264
Wavefront sensing at X-ray free-electron lasers is important for quantitatively understanding the fundamental properties of the laser, for aligning X-ray instruments and for conducting scientific experimental analysis. A fractional Talbot...