2017
DOI: 10.1051/0004-6361/201730936
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Extreme secular excitation of eccentricity inside mean motion resonance

Abstract: Context. It is well known that asteroids and comets fall into the Sun. Metal pollution of white dwarfs and transient spectroscopic signatures of young stars like β-Pic provide growing evidence that extra solar planetesimals can attain extreme orbital eccentricities and fall into their parent stars. Aims. We aim to develop a general, implementable, semi-analytical theory of secular eccentricity excitation of small bodies (planetesimals) in mean motion resonances with an eccentric planet valid for arbitrary valu… Show more

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Cited by 27 publications
(25 citation statements)
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“…2012; Frewen & Hansen 2014;Antoniadou & Veras 2016;Mustill et al 2017;Pichierri et al 2017). Multiple planets might undergo instability and gravitational scattering during the giant branch or white dwarf phases, but this process leaves at least one survivor in almost every case (Debes & Sigurdsson 2002;Veras et al 2013b;Voyatzis et al 2013;Mustill et al 2014;Veras & Gänsicke 2015;Veras et al 2016;Veras 2016b).…”
Section: Planets In Polluted Single White Dwarf Systemsmentioning
confidence: 99%
“…2012; Frewen & Hansen 2014;Antoniadou & Veras 2016;Mustill et al 2017;Pichierri et al 2017). Multiple planets might undergo instability and gravitational scattering during the giant branch or white dwarf phases, but this process leaves at least one survivor in almost every case (Debes & Sigurdsson 2002;Veras et al 2013b;Voyatzis et al 2013;Mustill et al 2014;Veras & Gänsicke 2015;Veras et al 2016;Veras 2016b).…”
Section: Planets In Polluted Single White Dwarf Systemsmentioning
confidence: 99%
“…While the exploration of the circular restricted three-body problem (as a paradigm for interactions between planets and small bodies in the solar system) dates back multiple centuries (Marquis de Laplace 1799; Poincaré 1902), its highly elliptical counterpart remains much more scarcely understood (see, e.g., Beaugé et al 2006;Michtchenko et al 2006;Pichierri et al 2017). Indeed, a well-formulated theory for gravitational coupling between a planet and a test particle in the severe orbit-crossing regime does not currently exist.…”
Section: Introductionmentioning
confidence: 99%
“…The two quantities are related via Kepler's equation. Therefore, rather than solving Kepler's equation at every computational step to express x and y in terms of λ, it is more convenient to integrate directly with respect to E by introducing the Jacobian (Pichierri et al 2017)…”
mentioning
confidence: 99%
“…2 therein). Pichierri et al (2017) concluded that of the 2:1, 3:1, and 4:1 MMRs, only the 4:1 MMR could excite the eccentricity of the asteroid enough for it to be disrupted by falling onto the central star. By searching for an increased concentration of purple diamonds in each of the panels of Fig.…”
Section: D-rtbpsmentioning
confidence: 99%