Relativistic Heavy Ion Physics: Results from AGS to RHIC
High-energy collisions of heavy ions provide a means to study QCD in a regime of high parton density, and may provide insight into its phase structure. Results from the four experiments at RHIC (BRAHMS, PHENIX, PHOBOS and STAR) are presented, and placed in context with the lower energy data from the AGS and SPS accelerators.
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Real-time energy measurement of clinical carbon ion beams using a cross-correlation time-of-flight method with parallel-plate chambers. [PDF]
Kwon NH +15 more
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Report Of Task Force For Relativistic Heavy Ion Physics [PDF]
Ludlam, T., Schwarzschild, A.
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Effective Core Potentials for Calculations of Continuum Spectra of Molecules Using the Molecular R-Matrix Method. [PDF]
Mašín Z +6 more
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TPCpp-10M: Simulated proton-proton collisions in a time projection chamber for AI foundation models. [PDF]
Li S +12 more
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Planar Black Holes and Entanglement Entropy in Analog Gravity Models. [PDF]
Bilic N, Zingg T.
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Laser spectroscopy and CP-violation sensitivity of actinium monofluoride. [PDF]
Athanasakis-Kaklamanakis M +41 more
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A Review of Intense Electromagnetic Fields in Heavy-Ion Collisions: Theoretical Predictions and Experimental Results. [PDF]
Shen D +5 more
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The nucleardatapy toolkit for simple access to experimental nuclear data, astrophysical observations, and theoretical predictions. [PDF]
Margueron J +12 more
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Comprehensive Observations of Magnetospheric Particle Acceleration, Sources, and Sinks (COMPASS): A Mission Concept to Explore the Extremes of Jupiter's Magnetosphere. [PDF]
Clark G +54 more
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