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Physical Review Letters
|
December 21, 2011
Multiwavelength anomalous diffraction at high x-ray intensity
Sang-Kil Son, Henry N Chapman, Robin Santra
Physical Review. E
|
August 17, 2022
Plasma environmental effects in the atomic structure for simulating x-ray free-electron-laser-heated solid-density matter
Rui Jin, Zoltan Jurek, Robin Santra, et al.
Iucrj
|
November 17, 2018
Towards the theoretical limitations of X-ray nanocrystallography at high intensity: the validity of the effective-form-factor description
Malik Muhammad Abdullah, Sang-Kil Son, Zoltan Jurek, et al.
Structural Dynamics (Melville, N.Y.)
|
August 2, 2016
Calculation of x-ray scattering patterns from nanocrystals at high x-ray intensity
Malik Muhammad Abdullah, Zoltan Jurek, Sang-Kil Son, et al.
The Journal of Physical Chemistry. B
|
December 18, 2025
Effective Quantum Theory of EXAFS in a Dissipative Liquid-Phase Medium
Mei Bai, Robin Santra, Sang-Kil Son, et al.
Structural Dynamics (Melville, N.Y.)
|
January 23, 2016
Efficient electronic structure calculation for molecular ionization dynamics at high x-ray intensity
Yajiang Hao, Ludger Inhester, Kota Hanasaki, et al.
Physical Review. E
|
September 28, 2017
Molecular-dynamics approach for studying the nonequilibrium behavior of x-ray-heated solid-density matter
Malik Muhammad Abdullah, Anurag, Zoltan Jurek, et al.
Physical Review. E
|
March 19, 2021
Erratum: Molecular-dynamics approach for studying the nonequilibrium behavior of x-ray-heated solid-density matter [Phys. Rev. E 96, 023205 (2017)]
Malik Muhammad Abdullah, Anurag, Zoltan Jurek, et al.
Physical Review. E
|
March 19, 2021
Transient ionization potential depression in nonthermal dense plasmas at high x-ray intensity
Rui Jin, Malik Muhammad Abdullah, Zoltan Jurek, et al.
Physical Review. E
|
May 20, 2022
Erratum: Transient ionization potential depression in nonthermal dense plasmas at high x-ray intensity [Phys. Rev. E 103, 023203 (2021)]
Rui Jin, Malik Muhammad Abdullah, Zoltan Jurek, et al.
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Search research articles
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Showing results (1-10 of 23) with videos related to
Sort By:
Page
of 3
Physical Review Letters
|
December 21, 2011
Multiwavelength anomalous diffraction at high x-ray intensity
Sang-Kil Son, Henry N Chapman, Robin Santra
Physical Review. E
|
August 17, 2022
Plasma environmental effects in the atomic structure for simulating x-ray free-electron-laser-heated solid-density matter
Rui Jin, Zoltan Jurek, Robin Santra, et al.
Iucrj
|
November 17, 2018
Towards the theoretical limitations of X-ray nanocrystallography at high intensity: the validity of the effective-form-factor description
Malik Muhammad Abdullah, Sang-Kil Son, Zoltan Jurek, et al.
Structural Dynamics (Melville, N.Y.)
|
August 2, 2016
Calculation of x-ray scattering patterns from nanocrystals at high x-ray intensity
Malik Muhammad Abdullah, Zoltan Jurek, Sang-Kil Son, et al.
The Journal of Physical Chemistry. B
|
December 18, 2025
Effective Quantum Theory of EXAFS in a Dissipative Liquid-Phase Medium
Mei Bai, Robin Santra, Sang-Kil Son, et al.
Structural Dynamics (Melville, N.Y.)
|
January 23, 2016
Efficient electronic structure calculation for molecular ionization dynamics at high x-ray intensity
Yajiang Hao, Ludger Inhester, Kota Hanasaki, et al.
Physical Review. E
|
September 28, 2017
Molecular-dynamics approach for studying the nonequilibrium behavior of x-ray-heated solid-density matter
Malik Muhammad Abdullah, Anurag, Zoltan Jurek, et al.
Physical Review. E
|
March 19, 2021
Erratum: Molecular-dynamics approach for studying the nonequilibrium behavior of x-ray-heated solid-density matter [Phys. Rev. E 96, 023205 (2017)]
Malik Muhammad Abdullah, Anurag, Zoltan Jurek, et al.
Physical Review. E
|
March 19, 2021
Transient ionization potential depression in nonthermal dense plasmas at high x-ray intensity
Rui Jin, Malik Muhammad Abdullah, Zoltan Jurek, et al.
Physical Review. E
|
May 20, 2022
Erratum: Transient ionization potential depression in nonthermal dense plasmas at high x-ray intensity [Phys. Rev. E 103, 023203 (2021)]
Rui Jin, Malik Muhammad Abdullah, Zoltan Jurek, et al.
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of 3