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NSR database version of May 1, 2024.

Search: Author = M.Horbatsch

Found 7 matches.

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2018VU02      Phys.Rev. A 98, 032513 (2018)

A.C.Vutha, M.Horbatsch, E.A.Hessels

Orientation-dependent hyperfine structure of polar molecules in a rare-gas matrix: A scheme for measuring the electron electric dipole moment

doi: 10.1103/PhysRevA.98.032513
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2017HO07      Phys.Rev. C 95, 035203 (2017)

M.Horbatsch, E.A.Hessels, A.Pineda

Proton radius from electron-proton scattering and chiral perturbation theory

NUCLEAR REACTIONS 1H(e, e), E=180, 315, 450 MeV; analyzed root-mean-square charge radius of the proton using MAMI cross section data and input from chiral perturbation theory. Comparison with muonic hydrogen and CODATA values.

doi: 10.1103/PhysRevC.95.035203
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2016HO02      Phys.Rev. C 93, 015204 (2016)

M.Horbatsch, E.A.Hessels

Evaluation of the strength of electron-proton scattering data for determining the proton charge radius

NUCLEAR REACTIONS 1H(e, e'), E=180-720 MeV; analyzed σ(E) data from MAMI collaboration; deduced rms charge radius. Comparison with other fits to the data.

doi: 10.1103/PhysRevC.93.015204
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2016LU05      Phys.Rev. A 93, 052705 (2016)

H.Luna, W.Wolff, E.C.Montenegro, Andre C.Tavares, H.J.Ludde, G.Schenk, M.Horbatsch, T.Kirchner

Ionization and electron-capture cross sections for single- and multiple-electron removal from H2O by Li3+ impact

NUCLEAR REACTIONS H, O(Li, X), E=0.75-5.8 MeV; measured reaction products, Eβ, Iβ; deduced ionization and electron capture σ and uncertainties. Comparison with theoretical calculations.

doi: 10.1103/PhysRevA.93.052705
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1994HO27      J.Phys.(London) G20, L137 (1994)

M.Horbatsch, D.V.Shapoval, I.V.Simenog

Resonances in Relativistic Charged Particle Scattering in the Tamm-Dancoff Approximation

doi: 10.1088/0954-3899/20/12/001
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1992DA26      Int.J.Mod.Phys. E1, 147 (1992)

J.W.Darewych, M.Horbatsch, R.Koniuk

Relativistic Charged Particle Scattering with Spin Spin Interactions

doi: 10.1142/S0218301392000072
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1982HO18      Z.Phys. A308, 329 (1982)

M.Horbatsch, R.M.Dreizler

Time Dependent Thomas Fermi Approach to Atomic Collisions. II. High and Intermediate Energy Proton-Atom Scattering

ATOMIC PHYSICS 40Ar(p, p), E=27.5-900 keV; calculated Thomas-Fermi density time evolution. TDHF equations.

doi: 10.1007/BF01415881
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