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Journal ArticleDOI

Cold Target Recoil Ion Momentum Spectroscopy: a &momentum microscope' to view atomic collision dynamics

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TLDR
The cold target recoil ion momentum spectroscopy (COLTRIMS) is a momentum space imaging technique for the investigation of the dynamics of ionizing ion, electron or photon impact reactions with atoms or molecules as mentioned in this paper.
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This article is published in Physics Reports.The article was published on 2000-06-01. It has received 985 citations till now. The article focuses on the topics: Recoil & Position and momentum space.

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Proceedings Article

Attosecond Physics

TL;DR: In this paper, an attosecond "oscilloscope" was used to visualize the oscillating electric field of visible light with an oscillator and probe multi-electron dynamics in atoms, molecules and solids.
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Recoil-ion and electron momentum spectroscopy: reaction-microscopes

TL;DR: In this article, the authors present a comprehensive set of FDCSs for single ionization of atoms by ion-impact, the most basic atomic fragmentation reaction, brought new insight, a couple of surprises and unexpected challenges to theory at keV to GeV collision energies.
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A White Paper on keV sterile neutrino Dark Matter

Rathin Adhikari, +144 more
TL;DR: A comprehensive review of keV-scale neutrino Dark Matter can be found in this paper, where the role of active neutrinos in particle physics, astrophysics, and cosmology is reviewed.
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Sterile neutrino Dark Matter

TL;DR: A comprehensive overview of the current status of the research on sterile neutrino Dark Matter can be found in this paper, where the authors discuss the motivation and limits obtained through astrophysical observations.
References
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Journal ArticleDOI

Time-dependent close-coupling calculations of correlated photoionization processes in helium

TL;DR: In this paper, a time-dependent close-coupled partial differential equation is partitioned on a numerical lattice for easy implementation on massively parallel computers and cross sections for photo- ionization with excitation and double photoionization are calculated by direct solution of the time dependent Schrodinger equation.
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Spectral variation of fixed‐molecule photoelectron angular distributions

TL;DR: In this article, the angular distribution of electrons ejected by electric dipole interaction from the K shells of CO and N2 molecules held fixed in space was computed, and the predicted distributions are very rich in structure, manifesting directly the spectral variation of the orbital momentum composition of the photocurrent.
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Direct Determination of Partial Wave Contributions in the σ * Shape Resonance of CO Molecules

TL;DR: In this paper, the first complete experiment for the C $K$shell of CO molecules in the region of the ∞-shape resonance was performed by detecting photoelectrons in coincidence with fragment ions.
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Circular dichroism in double photoionization.

TL;DR: A numerical calculation for helium which employs correlated wave functions shows the angular correlations of the escaping electron pair to be very different for left and right circular polarization such that the effect should be observable in a coincidence experiment.
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