Einstein@Home Discovery of a PALFA Millisecond Pulsar in an Eccentric Binary Orbit
B. Knispel, A. G. Lyne, B. W. Stappers, P. C. C. Freire, P. Lazarus,, B. Allen, C. Aulbert, O. Bock, S. Bogdanov, A. Brazier, F. Camilo, F., Cardoso, S. Chatterjee, J. M. Cordes, F. Crawford, J. S. Deneva, H.-B., Eggenstein, H. Fehrmann, R. Ferdman, J. W. T. Hessels, F. A. Jenet

TL;DR
This paper reports the discovery of a unique millisecond pulsar in an eccentric binary orbit, challenging standard formation theories and suggesting alternative evolutionary scenarios.
Contribution
It presents the fifth known eccentric binary millisecond pulsar and discusses potential formation mechanisms beyond the standard recycling model.
Findings
Discovered PSR J1950+2414 with an eccentric orbit (e=0.08)
Eccentric MSPs challenge the standard circularization theory
Comparison of properties with proposed formation scenarios
Abstract
We report the discovery of the millisecond pulsar (MSP) PSR J1950+2414 ( ms) in a binary system with an eccentric () 22-day orbit in Pulsar ALFA survey observations with the Arecibo telescope. Its companion star has a median mass of 0.3 and is most likely a white dwarf. Fully recycled MSPs like this one are thought to be old neutron stars spun-up by mass transfer from a companion star. This process should circularize the orbit, as is observed for the vast majority of binary MSPs, which predominantly have orbital eccentricities . However, four recently discovered binary MSPs have orbits with ; PSR J1950+2414 is the fifth such system to be discovered. The upper limits for its intrinsic spin period derivative and inferred surface magnetic field strength are comparable to those of the general MSP population. The large eccentricities are…
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