Measurement of interaction between antiprotons
arXiv:1507.07158 · doi:10.1038/nature15724
Abstract
One of the primary goals of nuclear physics is to understand the force between nucleons, which is a necessary step for understanding the structure of nuclei and how nuclei interact with each other. Rutherford discovered the atomic nucleus in 1911, and the large body of knowledge about the nuclear force since acquired was derived from studies made on nucleons or nuclei. Although antinuclei up to antihelium-4 have been discovered and their masses measured, we have no direct knowledge of the nuclear force between antinucleons. Here, we study antiproton pair correlations among data taken by the STAR experiment at the Relativistic Heavy Ion Collider and show that the force between two antiprotons is attractive. In addition, we report two key parameters that characterize the corresponding strong interaction: namely, the scattering length (f0) and effective range (d0). As direct information on the interaction between two antiprotons, one of the simplest systems of antinucleons, our result provides a fundamental ingredient for understanding the structure of more complex antinuclei and their properties.
25 pages, 4 figures. Submitted to Nature. Under media embargo
References in corpus (1)
Cited by in corpus (50)
- Exotic Hadrons from Heavy Ion Collisions
- Antinuclei in Heavy-Ion Collisions
- Study of the strong interaction among hadrons with correlations at the LHC
- p-p, p- and - correlations studied via femtoscopy in pp reactions at = 7 TeV
- First observation of an attractive interaction between a proton and a multi-strange baryon
- Search for a common baryon source in high-multiplicity pp collisions at the LHC
- Scattering studies with low-energy kaon-proton femtoscopy in proton-proton collisions at the LHC
- Probing Multi-Strange Dibaryon with Proton-Omega Correlation in High-energy Heavy Ion Collisions
- Nuclear dynamics and particle production near threshold energies in heavy-ion collisions
- Study of the interaction with femtoscopic correlation functions
- Insight into particle production mechanisms via angular correlations of identified particles in pp collisions at TeV
- Production of multistrange hadrons, light nuclei and hypertriton in central Au+Au collisions at 11.5 and 200 GeV
- The interaction studied via femtoscopy in p + Nb reactions at
- Kaon-proton strong interaction at low relative momentum via femtoscopy in Pb-Pb collisions at the LHC
- Strangeness baryon-baryon interactions and femtoscopic correlation functions in covariant chiral effective field theory
- Towards the understanding of the genuine three-body interaction for ppp and pp
- The Emission Order of Hydrogen Isotopes via Correlation Functions in 30 MeV/u Ar+Au Reactions
- Production of exotic hadrons in and nuclear collisions
- Measurement of strange baryon-antibaryon interactions with femtoscopic correlations
- Antimatter H Hypernucleus Production and the H/He Puzzle in Relativistic Heavy-Ion Collisions
- Clustering structure effect on Hanbury-Brown-Twiss correlation in C + Au collisions at 200 GeV}
- Two-proton momentum correlation from photondisintegration of -clustering light nuclei in the quasi-deuteron region
- -dibaryon production with hadron interaction potential from the lattice QCD in relativistic heavy-ion collisions
- Multi-Objective Energy Efficient Resource Allocation and User Association for In-band Full Duplex Small-Cells
- Effect of in-medium nucleon-nucleon cross section on proton-proton momentum correlation in intermediate energy heavy-ion collision
- and in Au + Au ~collisions at \srt~= 200 and 11.5 GeV from a multiphase transport model
- Imaging Freeze-out Sources and Extracting Strong Interaction Parameters in Relativistic Heavy-Ion Collisions
- Short range correlations in the extended quantum molecular dynamics model
- Effects of gates and velocity gates on light-particle momentum correlation in intermediate-energy heavy-ion collisions
- Extract neutron-neutron interaction strength and spatial-temporal dynamics of neutron emission from two-particle correlation function
- Light Nuclei Femtoscopy and Baryon Interactions in 3 GeV Au+Au Collisions at RHIC
- Productions of and in and decays
- Momentum correlation of light nuclei in Au + Au collisions at = 2.0 7.7 GeV
- Azimuthal-sensitive three-dimensional HBT radius in Au-Au collisions at GeV by the IQMD model
- Lévy walk of pions in heavy-ion collisions
- Scaling of nuclear modification factors for hadrons and light nuclei
- Temperature and density effects on the two-nucleon momentum correlation function from excited single nuclei
- Effects of hadronic mean-field potentials on Hanbury-Brown-Twiss correlations in relativistic heavy-ion collisions
- Investigating the pion emission source in pp collisions using the AMPT model with sub-nucleon structure
- A technique to study the elastic and inelastic interaction of quarkonium with hadrons using femtoscopic correlations
- Unexpected neutron/proton ratio and isospin effect in low-energy antiproton induced reactions
- Interrelation between -Ca Atom Spectra and Nuclear Density Profiles
- Antiproton production in heavy-ion collisions at subthreshold energies
- Accessing the deuteron source with pion-deuteron femtoscopy in Pb-Pb collisions at TeV
- Probing the Three-dimension Emission Source and Neutron Skin via - Correlations in Heavy-Ion Collisions
- Studies of final state interactions via femtoscopy in ALICE
- Toward a Unified Understanding of the Dense Matter Equation of State
- Unfolding the effects of final-state interactions and quantum statistics in two-particle angular correlations
- Experimental summary: step-by-step towards new physics
- Reconstructing rare particle source by femtoscopic correlations