activity
20142022
most citedThe universal "heartbeat" oscillations in black hole systems accross the mass-scale

29 citations · 118 across the 8 of their papers we have counts for

collaborators

7 papers

astro-ph.HE20213 cited

The Disk Veiling Effect of the Black Hole Low-Mass X-ray Binary A0620-00

Wan-Min Zheng, Qiaoya Wu, Jianfeng Wu +15

The optical light curves of quiescent black hole low-mass X-ray binaries often exhibit significant non-ellipsoidal variabilities, showing the photospheric radiation of the companio…

astro-ph.HE201629 cited

The universal "heartbeat" oscillations in black hole systems accross the mass-scale

Qingwen Wu, Bozena Czerny, Mikolaj Grzedzielski +7

The hyperluminous X-ray source (HLX-1, the peak X-ray luminosity ) near the spiral galaxy ESO 243-49 is possibly the best candidate for intermediate ma…

astro-ph.HE201625 cited

Central Engine of Late-Time X-ray Flares with Internal Origin

Hui-Jun Mu, Wei-Min Gu, Shu-Jin Hou +5

This work focuses on a sample of seven extremely late-time X-ray flares with peak time , among which two flares can be confirmed as the late-time activity…

astro-ph.HE20167 cited

On the origin of the HLX-1 outbursts

Mouyuan Sun, Wei-Min Gu, Zhen Yan +2

HLX-1, currently the best intermediate-mass black hole candidate, has undergone seven violent outbursts, each with a peak X-ray luminosity of $L_{\mathrm{peak},\mathrm{X}}\sim 10^{…

astro-ph.HE201617 cited

Variabilities of Gamma-ray Bursts from Black Hole Hyper-accretion Disks

Da-Bin Lin, Zu-Jia Lu, Hui-Jun Mu +5

The emission from black hole binaries (BHBs) and active galactic nuclei (AGNs) displays significant aperiodic variabilities. The most promising explanation for these variabilities…

astro-ph.HE20159 cited

Thermal Stability of Magnetized, Optically Thin, Radiative Cooling-dominated Accretion Disks

Xiao-Fei Yu, Wei-Min Gu, Tong Liu +2

We investigate the thermal stability of optically thin, two-temperature, radiative cooling-dominated accretion disks. Our linear analysis shows that the disk is thermally unstable…