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Multi-channel search for squarks and gluinos in √s =7 TeV pp collisions with the ATLAS detector at the LHC
Published 2016Subjects: “…Brookhaven National Laboratory…”
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Polarization preservation of polarized deuteron beams in the electron ion collider at Brookhaven National Laboratory
Published 2020-02-01“…This paper summarizes the details of the feasibility of a polarized deuteron beam for the future EIC at Brookhaven National Laboratory.…”
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Definitive answers <subtitle>Wayne A. Hendrickson University Professor, Biochemistry and Molecular Biophysics, Columbia University; Investigator, Howard Hughes Medical Institute; Scientific Director, New York Structural Biology Center; Chief Life Scientist, Photon Sciences Directorate, Brookhaven National Laboratory, New York, NY and Upton, NY</subtitle>
Published 2012-03-01Get full text
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AMX – the highly automated macromolecular crystallography (17-ID-1) beamline at the NSLS-II
Published 2022-11-01“…The highly automated macromolecular crystallography beamline AMX/17-ID-1 is an undulator-based high-intensity (>5 × 1012 photons s−1), micro-focus (7 µm × 5 µm), low-divergence (1 mrad × 0.35 mrad) energy-tunable (5–18 keV) beamline at the NSLS-II, Brookhaven National Laboratory, Upton, NY, USA. It is one of the three life science beamlines constructed by the NIH under the ABBIX project and it shares sector 17-ID with the FMX beamline, the frontier micro-focus macromolecular crystallography beamline. …”
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Site-specific electronic and magnetic excitations of the skyrmion material Cu2OSeO3
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Energy dissipation from a correlated system driven out of equilibrium
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Multi-electron transfer enabled by topotactic reaction in magnetite
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Hard X-ray inverse Compton scattering at photon energy of 87.5 keV
Published 2024-08-01“…Experiments have been performed at the Brookhaven National Laboratory, Accelerator Test Facility, employing the counter collision of a 70 MeV, 0.3 nC electron beam with a near infra-red Nd: YAG laser (1064 nm wavelength) pulse containing ~ 100 mJ in a single shot basis. …”
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Priming self-assembly pathways by stacking block copolymers
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