Astrometric microlensing probes of the isolated neutron star population with Roman
arXiv:2601.10789 · doi:10.1051/0004-6361/202558238
Abstract
Notoriously hard to detect and study, isolated neutron stars (NS) could provide valuable answers to fundamental questions about stellar evolution and explosion physics. With the upcoming Roman Space Telescope, scheduled for launch in 2026, a new and powerful channel for their detection - astrometric microlensing - will become available. We set out to create a realistic sample of simulated gravitational microlensing events as observed by Roman with the Galactic Bulge Time Domain Survey. We focus in particular on the population of NS lenses, which has until now been largely understudied. We use state-of-the-art Galactic models tailored for application to microlensing by compact objects. We simulate four different NS populations with Maxwellian natal kick distributions: km/s. We apply projected Roman precision, cadence, and detectability criteria. We find the parameter space - , which will be accessible to Roman observations, to be maximally efficient for classification of stellar remnants. We find a feature in this space that is characteristic to NS; using this feature, optimal samples of NS candidates can be constructed from Roman-like datasets. We describe the dependence of observable parameter distributions on the assumed mean kick velocities. As the effects of natal kicks are very complex and mutually counteracting, we suggest more detailed studies focused on the dynamics of NS are needed in anticipation of Roman and future surveys. We estimate Roman will observe approximately microlensing events - including with NS lenses - whose both photometric and astrometric signal are detectable; the event yield decreases by if gap-filling low-cadence observations are not included. We make all simulated microlensing event datasets publicly available in preparation for Roman data.
12 pages, 8 figures, submitted to A&A
References in corpus (42)
- GW170817: Observation of Gravitational Waves from a Binary Neutron Star Inspiral
- Refined Mass and Geometric Measurements of the High-Mass PSR J0740+6620
- Pulsational Pair-Instability Supernovae
- PSR J0952-0607: The Fastest and Heaviest Known Galactic Neutron Star
- Investigating stellar-mass black hole kicks
- Neutron star kicks by the gravitational tug-boat mechanism in asymmetric supernova explosions: progenitor and explosion dependence
- Strongly interacting matter exhibits deconfined behavior in massive neutron stars
- An isolated mass gap black hole or neutron star detected with astrometric microlensing
- Exploring the Lower Mass Gap and Unequal Mass Regime in Compact Binary Evolution
- Relativistic deflection of background starlight measures the mass of a nearby white dwarf star
- Simple recipes for compact remnant masses and natal kicks
- Predictions of the Nancy Grace Roman Space Telescope Galactic Exoplanet Survey II: Free-Floating Planet Detection Rates
- Theoretical and Experimental Constraints for the Equation of State of Dense and Hot Matter
- Investigating Signatures of Phase Transitions in Neutron-Star Cores
- Extinction law in the range 0.4-4.8 m and the 8620 DIB towards the stellar cluster Westerlund 1
- PopSyCLE: A New Population Synthesis Code for Compact Object Microlensing Events
- Systematic errors as a source of mass discrepancy in black hole microlensing event OGLE-2011-BLG-0462
- YSE-PZ: A Transient Survey Management Platform that Empowers the Human-in-the-Loop
- SPISEA: A Python-Based Simple Stellar Population Synthesis Code for Star Clusters
- Combined analysis of neutron star natal kicks using proper motions and parallax measurements for radio pulsars and Be X-ray binaries
- A Parametric Galactic Model toward the Galactic Bulge Based on Gaia and Microlensing Data
- Interplay Between Neutrino Kicks and Hydrodynamic Kicks of Neutron Stars and Black Holes
- Neutron stars and the dense matter equation of state: from microscopic theory to macroscopic observations
- First semi-empirical test of the white dwarf mass-radius relationship using a single white dwarf via astrometric microlensing
- An Observationally-Derived Kick Distribution for Neutron Stars in Binary Systems
- Calibration of neutron star natal kick velocities to isolated pulsar observations
- Constraints to neutron-star kicks in High-Mass X-ray Binaries with Gaia EDR3
- On the Neutron Star/Black Hole Mass Gap and Black Hole Searches
- Mesolensing Explorations of Nearby Masses: From Planets to Black Holes
- Detecting isolated stellar-mass black holes by the Roman telescope
- Unified neutron star equations of state calibrated to nuclear properties
- Rogue worlds meet the dark side: revealing terrestrial-mass primordial black holes with the Nancy Grace Roman Space Telescope
- The Galactic Underworld: The spatial distribution of compact remnants
- The Impact of Initial-Final Mass Relations on Black Hole Microlensing
- A microlensing search of 700 million VVV light curves
- Measuring Masses and Radii of Neutron Stars in Low-Mass X-ray Binaries: Effects of Atmospheric Composition and Touchdown Radius
- Disentangling the Black Hole Mass Spectrum with Photometric Microlensing Surveys
- Uncovering the Invisible: A Study of Gaia18ajz, a Candidate Black Hole Revealed by Microlensing
- A kinematically constrained kick distribution for isolated neutron stars
- A new estimation method for mass of an isolated neutron star using gravitational waves
- Astrometry-Only Detection of Microlensing Events with Gaia
- "Industrial-Scale" Black Hole Selection without a Satellite