Symmetry Parameter Constraints From A Lower Bound On The Neutron-Matter Energy
arXiv:1611.07133 · doi:10.3847/1538-4357/aa8db9
Abstract
We propose the existence of a lower bound on the energy of pure neutron matter (PNM) on the basis of unitary-gas considerations. We discuss its justification from experimental studies of cold atoms as well as from theoretical studies of neutron matter. We demonstrate that this bound results in limits to the density-dependent symmetry energy, which is the difference between the energies of symmetric nuclear matter and PNM. In particular, this bound leads to a lower limit to the volume symmetry energy parameter . In addition, for assumed values of above this minimum, this bound implies both upper and lower limits to the symmetry energy slope parameter , which describes the lowest-order density dependence of the symmetry energy. A lower bound on the neutron-matter incompressibility is also obtained. These bounds are found to be consistent with both recent calculations of the energies of PNM and constraints from nuclear experiments. Our results are significant because several equations of state that are currently used in astrophysical simulations of supernovae and neutron star mergers, as well as in nuclear physics simulations of heavy-ion collisions, have symmetry energy parameters that violate these bounds. Furthermore, below the nuclear saturation density, the bound on neutron-matter energies leads to a lower limit to the density-dependent symmetry energy, which leads to upper limits to the nuclear surface symmetry parameter and the neutron-star crust-core boundary. We also obtain a lower limit to the neutron-skin thicknesses of neutron-rich nuclei. Above the nuclear saturation density, the bound on neutron-matter energies also leads to an upper limit to the symmetry energy, with implications for neutron-star cooling via the direct Urca process.
27 pages, 13 figures, published version
References in corpus (19)
- Neutron Star Observations: Prognosis for Equation of State Constraints
- Equations of state for supernovae and compact stars
- Relativistic Mean-Field Hadronic Models under Nuclear Matter Constraints
- Neutron matter at next-to-next-to-next-to-leading order in chiral effective field theory
- Constraints on the high-density nuclear equation of state from the phenomenology of compact stars and heavy-ion collisions
- The Equation of State of a Low-Temperature Fermi Gas with Tunable Interactions
- Constraints on neutron star radii based on chiral effective field theory interactions
- Symmetry Energy I: Semi-Infinite Matter
- Constraints on the Symmetry Energy Using the Mass-Radius Relation of Neutron Stars
- Core-crust transition in neutron stars: predictivity of density developments
- Higher-order effects on the incompressibility of isospin asymmetric nuclear matter
- Incompressibility in finite nuclei and nuclear matter
- Density dependence of the nuclear symmetry energy: a microscopic perspective
- The symmetry energy at subnuclear densities and nuclei in neutron star crusts
- Neutron matter from chiral two- and three-nucleon calculations up to NLO
- Symmetry Energy III: Isovector Skins
- Divergence of the isospin-asymmetry expansion of the nuclear equation of state in many-body perturbation theory
- Quantum Monte Carlo approaches to nuclear and atomic physics
- Regulator Artifacts in Uniform Matter for Chiral Interactions
Cited by in corpus (196)
- A NICER View of PSR J0030+0451: Millisecond Pulsar Parameter Estimation
- Tidal Deformabilities and Radii of Neutron Stars from the Observation of GW170817
- Nonparametric constraints on neutron star matter with existing and upcoming gravitational wave and pulsar observations
- A critical examination of constraints on the equation of state of dense matter obtained from GW170817
- Constraining Neutron-Star Matter with Microscopic and Macroscopic Collisions
- How well do we know the neutron-matter equation of state at the densities inside neutron stars? A Bayesian approach with correlated uncertainties
- The Overarching Framework of Core-Collapse Supernova Explosions as Revealed by 3D Fornax Simulations
- Neutron Stars and the Nuclear Equation of State
- The equation of state for dense nucleonic matter from a metamodeling. I. Foundational aspects
- Ab initio predictions link the neutron skin of Pb to nuclear forces
- Nuclear Equation of State from ground and collective excited state properties of nuclei
- On the importance of viscous dissipation and heat conduction in binary neutron-star mergers
- Gravitational waves from neutron star mergers and their relation to the nuclear equation of state
- Progress in Constraining Nuclear Symmetry Energy Using Neutron Star Observables Since GW170817
- Towards Understanding Astrophysical Effects of Nuclear Symmetry Energy
- Nucleon Effective Masses in Neutron-Rich Matter
- Neutron star tidal deformabilities constrained by nuclear theory and experiment
- Dense Nuclear Matter Equation of State from Heavy-Ion Collisions
- A Successful 3D Core-Collapse Supernova Explosion Model
- Chiral Effective Field Theory and the High-Density Nuclear Equation of State
- On r-process nucleosynthesis from matter ejected in binary neutron starmergers
- Accurate bulk properties of nuclei from to from potentials with isobars
- Combined Constraints on the Equation of State of Dense Neutron-Rich Matter from Terrestrial Experiments and Observations of Neutron Stars
- GW190814 as a massive rapidly-rotating neutron star with exotic degrees of freedom
- Limiting masses and radii of neutron stars and their implications
- Three-Dimensional Supernova Explosion Simulations of 9-, 10-, 11-, 12-, and 13-M Stars
- A General-relativistic Determination of the Threshold Mass to Prompt Collapse in Binary Neutron Star Mergers
- Tidal deformability with sharp phase transitions in (binary) neutron stars
- A New Open-Source Nuclear Equation of State Framework based on the Liquid-Drop Model with Skyrme Interaction
- Quarkyonic Matter Equation of State in Beta-Equilibrium
- Constraints on Nuclear Symmetry Energy Parameters
- Extracting Nuclear Symmetry Energies at High Densities from Observations of Neutron Stars and Gravitational Waves
- Bayesian Inference of High-density Nuclear Symmetry Energy from Radii of Canonical Neutron Stars
- Temporal and Angular Variations of 3D Core-Collapse Supernova Emissions and their Physical Correlations
- Delta isobars and nuclear saturation
- GW190814's secondary component with mass M as a super-fast pulsar
- Tidal Deformabilities and Neutron Star Mergers
- Bayesian modeling of the nuclear equation of state for neutron star tidal deformabilities and GW170817
- Heavy Baryons in Compact Stars
- Nuclear and neutron-star matter from local chiral interactions
- New equations of state constrained by nuclear physics, observations, and QCD calculations of high-density nuclear matter
- Confronting gravitational-wave observations with modern nuclear physics constraints
- Revival of the Fittest: Exploding Core-Collapse Supernovae from 12 to 25 M
- Constraining nuclear matter parameters with GW170817
- A Detailed Examination of Astrophysical Constraints on the Symmetry Energy and the Neutron Skin of Pb with Minimal Modeling Assumptions
- Bayesian Inference of the Symmetry Energy of Super-Dense Neutron-Rich Matter from Future Radius Measurements of Massive Neutron Stars
- Effects of symmetry energy on equation of state for simulations of core-collapse supernovae and neutron-star mergers
- Equation of state effects in the core collapse of a - star
- PSR J0030+0451, GW170817 and the nuclear data: joint constraints on equation of state and bulk properties of neutron stars
- Relativistic description of dense matter equation of state and compatibility with neutron star observables: a Bayesian approach
- Towards mitigation of apparent tension between nuclear physics and astrophysical observations by improved modeling of neutron star matter
- Distinguishing the nature of comparable-mass neutron star binary systems with multimessenger observations: GW170817 case study
- Constraints on the symmetry energy and its associated parameters from nuclei to neutron stars
- Neutrino transport in black hole-neutron star binaries: neutrino emission and dynamical mass ejection
- The APR equation of state for simulations of supernovae, neutron stars and binary mergers
- Signatures for quark matter from multi-messenger observations
- Implications of the mass M of PSR~J0740+6620 on the Equation of State of Super-Dense Neutron-Rich Nuclear Matter
- Nuclear Equation of state for Compact Stars and Supernovae
- The Collapse and Three-Dimensional Explosion of Three-Dimensional, vis à vis One-Dimensional, Massive-star Supernova Progenitor Models
- Equation of State Dependence of Gravitational Waves in Core-Collapse Supernovae
- Supernova Simulations Confront SN 1987A Neutrinos
- Towards the Hadron-Quark Continuity Via a Topology Change in Compact Stars
- Unified weak/strong coupling framework for nuclear matter and neutron stars
- Towards an Understanding of the Resolution Dependence of Core-Collapse Supernova Simulations
- Bayesian Inference of the Symmetry Energy and the Neutron Skin in Ca and Pb from CREX and PREX-2
- How tightly is nuclear symmetry energy constrained by unitary Fermi gas?
- Quark-hadron crossover equations of state for neutron stars: constraining the chiral invariant mass in a parity doublet model
- The impact of non-dipolar magnetic fields in core-collapse supernovae
- Delineating Effects of Nuclear Symmetry Energy on the Radii and Tidal Polarizabilities of Neutron Stars
- Characteristic Time Variability of Gravitational-Wave and Neutrino Signals from Three-dimensional Simulations of Non-Rotating and Rapidly Rotating Stellar Core-Collapse
- Multi-messenger and multi-physics Bayesian inference for GW170817 binary neutron star merger
- Impact of the equation of state on - and - mode oscillations of neutron stars
- Correlations imposed by the unitary limit between few-nucleon systems, nuclear matter and neutron stars
- Comparing treatments of weak reactions with nuclei in simulations of core-collapse supernovae
- The final core collapse of pulsational pair instability supernovae
- Constraining hadron-quark phase transition parameters within the quark-mean-field model using multimessenger observations of neutron stars
- Binary-Stripped Stars as Core-Collapse Supernovae Progenitors
- On the effect of high order empirical parameters on the nuclear equation of state
- Curvature-slope correlation of nuclear symmetry energy and its imprints on the crust-core transition, radius and tidal deformability of canonical neutron stars
- Effects of Chiral Effective Field Theory Equation of State on Binary Neutron Star Mergers
- Dynamical ejecta and nucleosynthetic yields from eccentric binary neutron-star mergers
- Hypernuclear stars from relativistic Hartree-Fock density functional theory
- The impact of the crust equation of state on the analysis of GW170817
- Crustal heating in accreting neutron stars from the nuclear energy-density functional theory. I. Proton shell effects and neutron-matter constraint
- Are nuclear matter properties correlated to neutron star observables ?
- Towards a Unified Quark-Hadron Matter Equation of State for Applications in Astrophysics and Heavy-Ion Collisions
- Nuclear symmetry energy and hadron-quark mixed phase in neutron stars
- The state of matter in simulations of core-collapse supernovae -- Reflections and recent developments
- Cooling timescale for protoneutron stars and properties of nuclear matter: Effective mass and symmetry energy at high densities
- Phenomenological quark-hadron equations of state with first-order phase transitions for astrophysical applications
- A Neutron Star is born
- Skyrme functional with tensor terms from \textit{ab initio} calculations of neutron-proton drops
- Universal correlations in the nuclear symmetry energy, slope parameter, and curvature
- Predicting the moment of inertia of pulsar J0737-3039A from Bayesian modeling of the nuclear equation of state
- Constraints on the phase transition and nuclear symmetry parameters from PSR and multimessenger data of other neutron stars
- New insights into nuclear physics and weak mixing angle using electroweak probes
- Finite-temperature equation of state of polarized fermions at unitarity
- Effects of nuclear symmetry energy and equation of state on neutron star properties
- The nuclear symmetry energy from neutron skins and pure neutron matter in a Bayesian framework
- Low-energy nuclear physics and global neutron star properties
- Neutron stars and the dense matter equation of state: from microscopic theory to macroscopic observations
- Constraint to chiral invariant masses of nucleons from GW170817 in an extended parity doublet model
- Bayesian reconstruction of nuclear matter parameters from the equation of state of neutron star matter
- Directed flow of in high-energy heavy-ion collisions and potential in dense nuclear matter
- Future Prospects for Constraining Nuclear Matter Parameters with Gravitational Waves
- Hadron-quark mixed phase in the quark-meson coupling model
- Mass ejection in failed supernovae: equation of state and neutrino loss dependence
- Constraint on phase transition with the multimessenger data of neutron stars
- Nearly model-independent constraints on dense matter equation of state in a Bayesian approach
- Constraining the nuclear symmetry energy and properties of neutron star from GW170817 by Bayesian analysis
- Warm dense matter and cooling of supernovae remnants
- Influence of density dependence of symmetry energy in hot and dense matter for supernova simulations
- Heavy Nuclei as Thermal Insulation for Proto-Neutron Stars
- Constraining the density dependence of the symmetry energy with nuclear data and astronomical observations in the KIDS framework
- Constraining Nuclear Symmetry Energy with Multi-messenger Resonant Shattering Flares
- A New Approach to Mass and Radius of Neutron Stars with Supernova Neutrinos
- Bayesian inference of the incompressibility, skewness and kurtosis of nuclear matter from empirical pressures in relativistic heavy-ion collisions
- Constraints on Nuclear Saturation Properties from Terrestrial Experiments and Astrophysical Observations of Neutron Stars
- Structure in the speed of sound: from neutron stars to heavy-ion collisions
- A 3D Simulation of a Type II-P Supernova: from Core Bounce to Beyond Shock Breakout
- The Quenched in Nuclei and Emergent Scale Symmetry in Baryonic Matter
- The equation of state and some key parameters of neutron stars: constraints from GW170817, the nuclear data and the low mass X-ray binary data
- Constraints on the muon fraction and density profile in neutron stars
- Impact of Symmetry Energy on Sound Speed and Spinodal Decomposition in Dense Neutron-Rich Matter
- Bayesian inference of neutron-star observables based on effective nuclear interactions
- Hadron matter in neutron stars in view of gravitational wave observations
- Hot and Dense Homogeneous Nucleonic Matter Constrained by Observations, Experiment, and Theory
- Nuclear incompressibility and sound speed in uniform matter and finite nuclei
- Effects of quark-matter symmetry energy on hadron-quark coexistence in neutron-star matter
- Symmetry energy effect on the secondary component of GW190814 as a neutron star
- Impacts of anomaly on nuclear and neutron star equation of state based on a parity doublet model
- Efficient estimation method for time evolution of proto-neutron star mass and radius from supernova neutrino signal
- Bayesian Inference of Fine-Features of Nuclear Equation of State from Future Neutron Star Radius Measurements to 0.1km Accuracy
- Hyperonic Neutron Star Matter in Light of GW170817
- Analysis of the neutron matter equation of state and the symmetry energy up to fourth order of chiral effective field theory
- Emulating \emph{ab initio} computations of infinite nucleonic matter
- Symmetry energy and neutron star properties constrained by chiral effective field theory calculations
- Setting nonperturbative uncertainties on finite-temperature properties of neutron matter
- Magnetar QPOs and neutron star crust elasticity
- Topology and emergent symmetries in dense compact star matter
- Studies of the equation-of-state of nuclear matter by heavy-ion collisions at intermediate energy in the multi-messenger era
- Effects of the equation of state on the core-crust interface of slowly rotating neutron stars
- Repulsive potentials in dense neutron star matter and binding energy of in hypernuclei
- Manifestation of Hidden Symmetries in Baryonic Matter: From Finite Nuclei to Neutron Stars
- The Masses of Isolated Neutron Stars Inferred from the Gravitational Redshift Measurements
- Empirical radius formulas for canonical neutron stars from bidirectionally selecting EOS features in extended Bayesian analyses of observational data
- From neutron skins and neutron matter to the neutron star crust
- Constraining nuclear matter parameters from correlation systematics:a mean-field perspective
- Static response, collective frequencies and ground state thermodynamical properties of spin saturated two-component cold atoms and neutron matter
- Properties of binary components and remnant in GW170817 using equations of state in finite temperature field theory models
- Bayesian inference of finite-nuclei observables based on the KIDS model
- Correlations among symmetry energy elements in Skyrme models
- Impact of the nuclear equation of state on the formation of twin stars
- Bayesian Inference of dense matter equation of state of neutron star with antikaon condensation
- Nuclear skin and the curvature of the symmetry energy
- Neutron matter from local chiral effective field theory interactions at large cutoffs
- Nonparametric Representation of Neutron Star Equation of State Using Variational Autoencoder
- Minimal Length, Nuclear Matter, and Neutron Stars
- Dark matter admixed neutron stars with a realistic nuclear equation of state from chiral nuclear interactions
- Bayesian inference of neutron-skin thickness and neutron-star observables based on effective nuclear interactions
- Lee-Yang-inspired energy-density functional including contributions from -wave scattering
- Influence of the nuclear symmetry energy slope on observables of compact stars with -admixed hypernuclear matter
- Nuclear pasta and symmetry energy in the relativistic point-coupling model
- Effects of Different Closure Choices in Core-Collapse Supernova Simulations
- Equation of State of Neutron-Rich Matter in -Dimensions
- Constraining the properties of dense matter and neutron stars by combining nuclear physics and gravitational waves from GW170817
- Relativistic self-energy decomposition of nuclear symmetry energy and equation of state of neutron matter within QCD sum rules
- Strong post-merger gravitational radiation of GW170817-like events
- From weak to strong: constrained extrapolation of perturbation series with applications to dilute Fermi systems
- High squeezed-out n/p ratio as a probe of of the symmetry energy
- Inferring the Equation of State from Neutron Star Observables via Machine Learning
- Phase transition and nuclear symmetry energy from neutron star observations: Constraints in light of PSR J0614--3329
- Constraints on the Nuclear Symmetry Energy from Experiments, Theory and Observations
- Accreting neutron stars from the nuclear energy-density functional theory. II. Equation of state and global properties
- The key factor to determine the relation between radius and tidal deformability of neutron stars: slope of symmetry energy
- Neutron star mass formula with nuclear saturation parameters
- High Density with Elliptic Flows
- Intrinsic Correlations Among Characteristics of Neutron-rich Matter Imposed by the Unbound Nature of Pure Neutron Matter
- Optimized Statistical Approach for Comparing Multi-Messenger Neutron Star Data
- Critical properties of calibrated relativistic mean-field models for the transition to warm, non-homogeneous nuclear matter
- Quark matter symmetry energy effect on equation of state for neutron stars
- Composition of scalar mesons and their effects on nuclear matter properties in an extended linear sigma model
- The nuclear symmetry energy and the neutron skin thickness in nuclei
- The nucleardatapy toolkit for simple access to experimental nuclear data, astrophysical observations, and theoretical predictions
- Fundamental Oscillation Modes in Neutron Stars with Hyperons and Delta Baryons
- Nuclear masses and the equation of state of nuclear matter
- Neutron matter within QCD sum rules
- Nuclear physics inputs for dense-matter modelling in neutron stars. The nuclear equation of state
- Strongly interacting matter in extreme magnetic fields
- Fast neutron star cooling in light of the PREX-2 experiment
- Effective Field Theories for Neutron Stars Physics
- Constrained extrapolation problem and order-dependent mappings
- Inner crust equations of state for CompOSE
- Imprints of high-density nuclear symmetry energy on the crustal fraction of neutron star moment of inertia
- The maximum mass and rotational kinetic energy of rapidly rotating neutron stars
- A Black Hole is Born: 3D GRMHD Simulation of Black Hole Formation from Core-Collapse