SPH simulations of zero-energy partial TDEs find fallback ~t^{-9/4}, optical luminosities 10^{42-44} erg/s at 10^4 K and radii 10-100 au, indicating many detected TDEs may be partial rather than full.
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Quantum hydrodynamic simulation of a helium white dwarf disrupted by a black hole predicts quantized vortices generating flickering EM radiation in the accretion disk and gravitational waves from the elongated white dwarf.
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Are most detected tidal disruption events partial?
SPH simulations of zero-energy partial TDEs find fallback ~t^{-9/4}, optical luminosities 10^{42-44} erg/s at 10^4 K and radii 10-100 au, indicating many detected TDEs may be partial rather than full.
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Searching for cosmic vortices
Quantum hydrodynamic simulation of a helium white dwarf disrupted by a black hole predicts quantized vortices generating flickering EM radiation in the accretion disk and gravitational waves from the elongated white dwarf.