activity
20172022
most citedEchoes of novel black-bounce spacetimes

49 citations · 115 across the 10 of their papers we have counts for

collaborators

19 papers

quant-ph2022

Dirac Equation under Modified Hylleraas Potential in Noncommutative Spaces

Lu Liu, Zheng-Wen Long

In this paper, we study the interaction of spin 1/2 Dirac particles with the Hylleraas potential based on the noncommutative space framework. Solving the first-order correction of…

gr-qc20221 cited

Thermodynamics of the Bardeen Black Hole with quintessence matter on the EGUP framework

Shurui Wu, Bing-Qian Wang, Hao Chen +1

In this paper, we have used the extended generalized uncertainty principle to investigate the thermodynamics of the Bardeen Black Hole with quintessence matter on the EGUP framewor…

gr-qc202149 cited

Echoes of novel black-bounce spacetimes

Yi Yang, Dong Liu, Zhaoyi Xu +3

Gravitational wave echoes can be used as a significant observable to understand the properties of black holes horizon. In addition, echoes would also closely relate to the unique p…

quant-ph202125 cited

The generalized Klein-Gordon oscillator with position-dependent mass in a particular Gödel-type space-time

Yi Yang, Zheng-Wen Long, Qi-Kang Ran +3

The relativistic quantum dynamics of the generalized Klein-Gordon (KG) oscillator having position-dependent mass in the Gödel-type space-time is investigated. We have presented the…

quant-ph202111 cited

Aharonov-Bohm effect on the generalized Duffin-Kemmer-Petiau oscillator in the Som-Raychaudhuri space-time

Yi Yang, Zheng-Wen Long, Hao Chen +2

The generalized Duffin-Kemmer-Petiau (DKP) oscillator with electromagnetic interactions in the curved space-times are investigated. We introduce firstly the generalized DKP oscilla…

quant-ph202115 cited

DKP oscillator in the presence of a spinning cosmic string

Yi Yang, Hassan Hassanabadi, Hao Chen +1

We investigate the modification of gravitational fields generated by topological defects on a generalized Duffin-Kemmer-Petiau (DKP) oscillator for spin-0 particle under spinning c…