Exploring inside-out Doppler tomography: non-magnetic cataclysmic variables
arXiv:1507.05213 · doi:10.1051/0004-6361/201526381
Abstract
Doppler tomography is a technique that has revolutionised the interpretation of the phase-resolved spectroscopic observations of interacting binary systems. We present the results of our investigation of reversing the velocity axis to create an inside-out Doppler coordinate framework with the intent to expose overly compacted and enhance washed out emission details in the standard Doppler framework. The inside-out tomogram is constructed independently of the standard tomogram by directly projecting phase-resolved spectra onto an inside-out velocity coordinate frame. For the inside-out framework, the zero-velocity origin is transposed to the outer circumference and the maximum velocities to the origin of the velocity space. We test the technique on a simulated system and two real systems with easily identifiable features, namely the accretion disc and bright spot in WZ Sge, and spiral shocks in IP Peg. Our tests show that there is a redistribution of the relative brightness of emission components throughout the tomograms, i.e., where the standard framework tends to concentrate and enhance lower velocity features towards the origin, the inside-out velocity framework tends to concentrate and enhance higher velocity features towards the origin. Conversely, the standard framework disperses and smears the higher velocities farther away from the origin whereas the inside-out framework disperses and smears the lower velocities. In addition, the projection of the accretion disc in velocity space now appears correctly orientated with the inner edge close to the maximum velocity origin and its outer edge closer to the zero-velocity outer circumference. Furthermore, the gas stream and secondary star are projected on the outside of the disc with the bright spot of the stream-disc impact region on the disc's outer edge in the inside-out velocity space.
9 pages, 8 figures, published in A&A
References in corpus (7)
- Magnetic White Dwarfs
- Dynamical constraints on the component masses of the cataclysmic variable WZ Sge
- Remarkable spectral variability on the spin period of the accreting white dwarf in V455 And
- A Radial Velocity Study of CTCV J1300-3052
- Interpreting the X-ray state transitions of Cygnus X-1
- Tomography of X-ray Nova Muscae 1991: Evidence for ongoing mass transfer and stream-disc overflow
- New insights from inside-out Doppler tomography
Cited by in corpus (17)
- Exploring inside-out Doppler tomography: magnetic cataclysmic variables
- Spectroscopic Detection of a 2.9-hour Orbit in a Long Period Radio Transient
- Discovery of Two Polars from a Crossmatch of ZTF and the SRG/eFEDS X-ray Catalog
- Driving the Beat: Time-Resolved Spectra of the White Dwarf Pulsar AR Scorpii
- On accretion in the eclipsing polar BS Tri
- A Radial Velocity Study of the Intermediate Polar EX Hydrae
- A Joint SRG/eROSITA + ZTF Search: Discovery of a 97-min Period Eclipsing Cataclysmic Variable with Evidence of a Brown Dwarf Secondary
- A Comprehensive K2 and Ground-Based Study of CRTS J035905.9+175034, an Eclipsing SU UMa System with a Large Mass Ratio
- Optical spectra of FO Aquarii during low and high accretion rates
- MASTER OT J132104.04+560957.8: A Polar with Absorption-Emission Line Reversals
- Discovery and characterization of ZTF J0112+5827: An 80.9-minute polar with strong cyclotron features
- Optical study of the polar BM CrB in low accretion state
- A spectroscopic, photometric, polarimetric and radio study of the eclipsing polar UZ Fornacis: the first simultaneous SALT and MeerKAT observations
- SRGe J194401.8+284452 -- an X-ray Cataclysmic Variable in the Field of the Gamma-Ray Source 4FGL J1943.9+2841
- A half-ring of ionized circumstellar material trapped in the magnetosphere of a white dwarf merger remnant
- A post-common-envelope binary with double-peaked Balmer emission lines from TMTS
- Optical Spectroscopy of the Most Compact Accreting Binary Harboring a Magnetic White Dwarf and a Hydrogen-rich Donor