The Complete Evolution of a Neutron-Star Binary through a Common Envelope Phase Using 1D Hydrodynamic Simulations
arXiv:1907.12573 · doi:10.3847/2041-8213/ab40d1
Abstract
Over forty years of research suggests that the common envelope phase, in which an evolved star engulfs its companion upon expansion, is the critical evolutionary stage forming short-period, compact-object binary systems, such as coalescing double compact objects, X-ray binaries, and cataclysmic variables. In this work, we adapt the one-dimensional hydrodynamic stellar evolution code, MESA, to model the inspiral of a 1.4M neutron star (NS) inside the envelope of a 12 red supergiant star. We self-consistently calculate the drag force experienced by the NS as well as the back-reaction onto the expanding envelope as the NS spirals in. Nearly all of the hydrogen envelope escapes, expanding to large radii (10 AU) where it forms an optically thick envelope with temperatures low enough that dust formation occurs. We simulate the NS orbit until only 0.8M of the hydrogen envelope remains around the giant star's core. Our results suggest that the inspiral will continue until another 0.3M are removed, at which point the remaining envelope will retract. Upon separation, a phase of dynamically stable mass transfer onto the NS accretor is likely to ensue, which may be observable as an ultraluminous X-ray source. The resulting binary, comprised of a detached 2.6M helium-star and a NS with a separation of 3.3-5.7R, is expected to evolve into a merging double neutron-star, analogous to those recently detected by LIGO/Virgo. For our chosen combination of binary parameters, our estimated final separation (including the phase of stable mass transfer) suggests a very high -equivalent efficiency of 5.
10 pages, 5 figures, submitted to The Astrophysical Journal Letters. Comments welcome
References in corpus (11)
- Modules for Experiments in Stellar Astrophysics (MESA)
- Multi-messenger Observations of a Binary Neutron Star Merger
- Discovery of a 0.42-s pulsar in the ultraluminous X-ray source NGC 7793 P13
- Discovery of coherent pulsations from the Ultraluminous X-ray Source NGC 7793 P13
- The Interaction of Stellar Objects within a Common Envelope
- Common envelope ejection in massive binary stars - Implications for the progenitors of GW150914 and GW151226
- Asymmetric Accretion Flows within a Common Envelope
- Recombination energy in double white dwarf formation
- Common envelope events with low-mass giants: understanding the transition to the slow spiral-in
- On the Accretion-Fed Growth of Neutron Stars During Common Envelope
- Episodic mass ejections from common-envelope objects
Cited by in corpus (101)
- One Channel to Rule Them All? Constraining the Origins of Binary Black Holes using Multiple Formation Pathways
- COSMIC Variance in Binary Population Synthesis
- The cosmic merger rate density of compact objects: impact of star formation, metallicity, initial mass function and binary evolution
- The role of mass transfer and common envelope evolution in the formation of merging binary black holes
- It has to be cool: on supergiant progenitors of binary black hole mergers from common-envelope evolution
- The impact of mass-transfer physics on the observable properties of field binary black hole populations
- The expansion of stripped-envelope stars: consequences for supernovae and gravitational-wave progenitors
- POSYDON: A General-Purpose Population Synthesis Code with Detailed Binary-Evolution Simulations
- Exploring the Lower Mass Gap and Unequal Mass Regime in Compact Binary Evolution
- Joint constraints on the field-cluster mixing fraction, common envelope efficiency, and globular cluster radii from a population of binary hole mergers via deep learning
- The cosmic merger rate density evolution of compact binaries formed in young star clusters and in isolated binaries
- Compact object mergers: exploring uncertainties from stellar and binary evolution with SEVN
- Revising natal kick prescriptions in population synthesis simulations
- Binary Black Hole Formation with Detailed Modeling: Stable Mass Transfer Leads to Lower Merger Rates
- Binary black hole mergers: formation and populations
- Dynamics of black hole - neutron star binaries in young star clusters
- The impact of common envelope development criteria on the formation of LIGO/Virgo sources
- Stochastic gravitational-wave background as a tool to investigate multi-channel astrophysical and primordial black-hole mergers
- Formation channels of single and binary stellar-mass black holes
- Common envelopes in massive stars: Towards the role of radiation pressure and recombination energy in ejecting red supergiant envelopes
- The Mass Distribution of Neutron Stars in Gravitational-wave Binaries
- Common-envelope evolution with an asymptotic giant branch star
- The contribution from stars stripped in binaries to cosmic reionization of hydrogen and helium
- Common-Envelope Episodes that lead to Double Neutron Star formation
- Mass and rate of hierarchical black hole mergers in young, globular and nuclear star clusters
- The origin of pulsating ultra-luminous X-ray sources: Low- and intermediate-mass X-ray binaries containing neutron star accretors
- Mass and star formation rate of the host galaxies of compact binary mergers across cosmic time
- A two-stage formalism for common-envelope phases of massive stars
- Population Synthesis of Black Hole Binaries with Normal-Star Companions: I. Detached Systems
- Disk formation and jet inclination effects in Common Envelopes
- Compact Binary Coalescences: Astrophysical Processes and Lessons Learned
- Population Synthesis of Black Hole X-Ray Binaries
- Common Envelope Wind Tunnel: The Effects of Binary Mass Ratio and Implications for the Accretion-Driven Growth of LIGO Binary Black Holes
- Core-Collapse Supernovae in Binaries as the Origin of Galactic Hyper-Runaway Stars
- Probing the progenitors of spinning binary black-hole mergers with long gamma-ray bursts
- The role of jets in exploding supernovae and in shaping their remnants
- Does GW190425 require an alternative formation pathway than a fast-merging channel?
- From 3D hydrodynamic simulations of common-envelope interaction to gravitational-wave mergers
- Common envelopes in massive stars II: The distinct roles of hydrogen and helium recombination
- The role of core-collapse physics in the observability of black-hole neutron-star mergers as multi-messenger sources
- The correlation of field binary black hole mergers and how 3G gravitational-wave detectors can constrain it
- Compact Object Modeling in the Globular Cluster 47 Tucanae
- Stars stripped in binaries -- the living gravitational wave sources
- Constraining accretion efficiency in massive binary stars with LIGO-Virgo black holes
- Stripped-Envelope Stars in Different Metallicity Environments I. Evolutionary Phases, Classification and Populations
- Constraints on the contributions to the observed binary black hole population from individual evolutionary pathways in isolated binary evolution
- Prospects of gravitational-waves detections from common-envelope evolution with LISA
- Eccentric or circular? A reanalysis of binary black hole gravitational wave events for orbital eccentricity signatures
- SNAPSHOT: Connections between Internal and Surface Properties of Massive Stars
- Three-dimensional simulations of the jet feedback mechanism in common envelope jets supernova
- Simulating highly-eccentric common envelope jets supernova (CEJSN) impostors
- Origin of Spin-Orbit Misalignments: The Microblazar V4641 Sgr
- Convection Reconciles the Difference in Efficiencies Between Low-Mass and High-Mass Common Envelopes
- Common envelope jets supernova r-process yields can reproduce abundance evolution in the Galaxy
- Fallback supernova assembly of heavy binary neutron stars and light black hole-neutron star pairs and the common stellar ancestry of GW190425 and GW200115
- On the Mass Ratio Distribution of Black Hole Mergers in Triple Systems
- Post-dynamical inspiral phase of common envelope evolution: Binary orbit evolution and angular momentum transport
- Detectablity of Black Hole Binaries with Gaia: Dependence on Binary Evolution Models
- Revisiting Common Envelope Evolution -- A New Semi-Analytic Model for N-body and Population Synthesis Codes
- X-ray luminosity function of high-mass X-ray binaries: Studying the signatures of different physical processes using detailed binary evolution calculations
- Simulating the negative jet feedback mechanism in common envelope jets supernovae
- Applying the metallicity-dependent binary fraction to double white dwarf formation: Implications for LISA
- Hydrodynamics and survivability during post-main-sequence planetary engulfment
- Double common envelope jets supernovae (CEJSNe) by triple-star systems
- Common Envelope Wind Tunnel: Range of Applicability and Self-Similarity in Realistic Stellar Envelopes
- Constraining Delay Time Distribution of Binary Neutron Star Mergers from Host Galaxy Properties
- Exploring the evolution of gravitational-wave emitters with efficient emulation: Constraining the origins of binary black holes using normalising flows
- Multiwavelength Characterization of the High Mass X-ray Binary Population of M31
- A pulsar-helium star compact binary system formed by common envelope evolution
- Targeted modeling of GW150914's binary black hole source with dart_board
- Binary neutron star merger in common envelope jet supernovae
- Hot subdwarf B stars with neutron star components II: Binary population synthesis
- Orbital Eccentricity and Spin-Orbit Misalignment Are Evidence that Neutron Star-Black Hole Mergers Form through Triple Star Evolution
- Constraining mass transfer and common-envelope physics with post-supernova companion monitoring
- Simulating jets from a neutron star companion hours after a core collapse supernova
- Finding the birthplace of HMXBs in the Galaxy using Gaia EDR3: kinematical age determination through orbit integration
- Common envelopes in massive stars III. The obstructive role of radiation transport in envelope ejection
- Observational constraints on the origin of the elements. IX. 3D NLTE abundances of metals in the context of Galactic Chemical Evolution Models and 4MOST
- Rethinking Thorne-Żytkow Object Formation: The Fate of X-ray Binary LMC X-4 and Implications for Ultra-long Gamma-ray Bursts
- Collision-induced mass loss and mass gain on an extremely massive star. An analytical approach and a static proto-globular cluster test-case
- Simulating the deposition of angular momentum by jets in common envelope evolution
- Magnetically driven outflows in 3D common-envelope evolution of massive stars
- The Role of Strong Gravity and the Nuclear Equation of State on Neutron-Star Common-Envelope Accretion
- Astrophysics with the Laser Interferometer Space Antenna
- Formation of the First Two Black Hole-Neutron Star Mergers (GW200115 and GW200105) from Isolated Binary Evolution
- Enhanced Mass Loss of Very Massive Stars: Impact on the Evolution, Binary Processes, and Remnant Mass Spectrum
- Gravitational Waves from Supernova Mass Loss and Natal Kicks in Close Binaries
- Minutes-delayed jets from a neutron star companion in core collapse supernovae
- Simulating the outcome of binary neutron star merger in common envelope jets supernovae
- Luminous Fast Blue Optical Transients as "Failed" Gravitational-wave Sources: Helium CoreBlack Hole Mergers Following Delayed Dynamical Instability
- An optimal envelope ejection efficiency for merging neutron stars
- From Common Envelope Evolution to Luminous Red Novae I: A One-dimensional Radiation Hydrodynamic Model
- Evolutionary tracks of binary neutron star progenitors across cosmic times
- The depletion of the red supergiant envelope radiative zone during common envelope evolution
- Stellar response after stripping as a model for common-envelope outcomes
- The Energy Sharing Timescale in an Analytic Framework for Common Envelope Hydrodynamics
- Testing the presence of a dormant black hole inside HR 6819
- Astrophysical and Cosmological Relevance of the High-Frequency Features in the Stochastic Gravitational-Wave Background
- Gravitational background from dynamical binaries and detectability with 2G detectors
- Forming Double Neutron Stars using Detailed Binary Evolution Models with POSYDON: Comparison to the Galactic Systems
- Luminous Fast Blue Optical Transients and Type Ibn/Icn SNe from Wolf-Rayet/Black Hole Mergers