Generalized split monopole magnetospheres: the effects of current sheets
Huiquan Li, Jiancheng Wang

TL;DR
This paper explores how current sheets in generalized split monopole magnetospheres can dissipate or extract energy without changing the electromagnetic energy, revealing new configurations that resemble pulsar and black hole magnetospheres.
Contribution
The authors construct new split monopole configurations with arbitrary intersection angles of field lines and analyze energy dissipation and extraction in current sheets, extending previous models.
Findings
Up to 47% of spin-down energy transferred to Joule heating in the current sheet.
Negative energy dissipation observed, indicating energy extraction from the central object.
Current sheets can heat or cool depending on the configuration, acting like an 'air conditioner' in space.
Abstract
We show that energy should be dissipated or extracted in the current sheet (CS) of a split magnetosphere deviating from the Michel split monopole, with the CS heating up or cooling down. But the electromagnetic energy remains unchanged everywhere. Based on the de-centered monopole solution generated by symmetry in flat spacetime, we construct two generalized split monopole configurations, in which the field lines intersect with the CS at arbitrary angles. One configuration resembles the outer geometry of the so-called ``new pulsar magnetosphere model", for which up to of the spin down energy is transferred to the Joule heating process in the CS. In the other configuration, we observe that negative energy is dissipated in the CS, which is usually observed in magnetospheres on rotating black holes. This means that energy is extracted simultaneously from the central star and the CS…
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