Continuous Gravitational Waves from Supersoft X-ray Sources: Promising Targets for deci-Hz Detectors
Mayusree Das, Tomasz Bulik, Sreeta Roy, Banibrata Mukhopadhyay

TL;DR
This paper models continuous gravitational waves emitted by accreting white dwarfs in supersoft X-ray sources, showing they are promising targets for upcoming deci-Hz gravitational wave detectors, enabling insights into WD magnetic fields and rotation.
Contribution
It presents a detailed model of gravitational wave emission from accreting white dwarfs in SSSs, highlighting their detectability and potential to reveal internal stellar properties.
Findings
WDs in SSSs emit CGWs in the deci-Hz band accessible to planned detectors.
Detectable signals can probe internal magnetic fields and rotation of WDs.
Targeted searches can identify hidden populations of accreting, magnetized WDs.
Abstract
Supersoft X-ray sources (SSSs) host white dwarfs (WDs) accreting at rates that sustain steady nuclear burning, driving rapid mass growth, radial contraction, and magnetic field amplification. Angular-momentum transfer from the accretion disk naturally spins up the WD, while the amplified internal magnetic field induces a non-axisymmetric deformation in presence of a misaligned rotation. Such WDs emits continuous gravitational waves (CGWs). We model the coupled evolutions of stellar mass, spin, and magnetic structure in accreting WDs in SSSs with MESA, and compute the resulting quadrupolar deformation with the Einstein-Maxwell solver XNS. We show that WDs in SSSs, particularly near the end of thermal timescale mass transfer and close to the Chandrasekhar mass limit, produce CGWs predominantly in the deci-Hz band accessible to planned detectors such as DECIGO, BBO, Deci-Hz, ALIA, and…
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Taxonomy
TopicsAstrophysical Phenomena and Observations · Gamma-ray bursts and supernovae · Astronomy and Astrophysical Research
