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Lorin X Benedict

Explore the profile of Lorin X Benedict including associated specialties, affiliations and a list of published articles. Areas
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Articles 16
Citations 60
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Recent Articles
1.
Kraus R, Hemley R, Ali S, Belof J, Benedict L, Bernier J, et al.
Science . 2022 Jan; 375(6577):202-205. PMID: 35025665
The discovery of more than 4500 extrasolar planets has created a need for modeling their interior structure and dynamics. Given the prominence of iron in planetary interiors, we require accurate...
2.
Myint P, Benedict L, Wu C, Belof J
ACS Omega . 2021 May; 6(20):13341-13364. PMID: 34056482
We present a global optimization method to construct phase boundaries in multicomponent mixtures by minimizing the Gibbs energy. The minimization method is, in essence, an extension of the Maxwell construction...
3.
Kritcher A, Swift D, Doppner T, Bachmann B, Benedict L, Collins G, et al.
Nature . 2020 Aug; 584(7819):51-54. PMID: 32760045
White dwarfs represent the final state of evolution for most stars. Certain classes of white dwarfs pulsate, leading to observable brightness variations, and analysis of these variations with theoretical stellar...
4.
Swift D, Bethkenhagen M, Correa A, Lockard T, Hamel S, Benedict L, et al.
Phys Rev E . 2020 Jun; 101(5-1):053201. PMID: 32575206
Atom-in-jellium calculations of the Einstein frequency were used to calculate the mean displacement of an ion over a wide range of compression and temperature. Expressed as a fraction of the...
5.
Swift D, Lockard T, Kraus R, Benedict L, Sterne P, Bethkenhagen M, et al.
Phys Rev E . 2019 Jul; 99(6-1):063210. PMID: 31330676
Recent path-integral Monte Carlo and quantum molecular dynamics simulations have shown that computationally efficient average-atom models can predict thermodynamic states in warm dense matter to within a few percent. One...
6.
Myint P, Chernov A, Sadigh B, Benedict L, Hall B, Hamel S, et al.
Phys Rev Lett . 2018 Oct; 121(15):155701. PMID: 30362804
The fundamental study of phase transition kinetics has motivated experimental methods toward achieving the largest degree of undercooling possible, more recently culminating in the technique of rapid, quasi-isentropic compression. This...
7.
Zhang S, Militzer B, Benedict L, Soubiran F, Sterne P, Driver K
J Chem Phys . 2018 Mar; 148(10):102318. PMID: 29544329
Carbon-hydrogen plasmas and hydrocarbon materials are of broad interest to laser shock experimentalists, high energy density physicists, and astrophysicists. Accurate equations of state (EOSs) of hydrocarbons are valuable for various...
8.
Scullard C, Serna S, Benedict L, Ellison C, Graziani F
Phys Rev E . 2018 Feb; 97(1-1):013205. PMID: 29448423
In this work, we elucidate the mathematical structure of the integral that arises when computing the electron-ion temperature equilibration time for a homogeneous weakly coupled plasma from the Lenard-Balescu equation....
9.
Myint P, Benedict L, Belof J
J Chem Phys . 2017 Sep; 147(8):084505. PMID: 28863506
We present equations of state relevant to conditions encountered in ramp and multiple-shock compression experiments of water. These experiments compress water from ambient conditions to pressures as high as about...
10.
Benedict L, Surh M, Stanton L, Scullard C, Correa A, Castor J, et al.
Phys Rev E . 2017 May; 95(4-1):043202. PMID: 28505713
We use classical molecular dynamics (MD) to study electron-ion temperature equilibration in two-component plasmas in regimes for which the presence of coupled collective modes has been predicted to substantively reduce...