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Photophoresis in the circumjovian disk and its impact on the orbital configuration of the Galilean satellites

As of 20 August 2026, this Paper Citation Record lists 16 of 16 outbound references and 0 inbound Pith citation observations for arXiv:1908.03128.

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pith.paper-citation-record.v1
1908.03128 v1

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measured 16 of 16 reference resolution

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Source: paper_references, paper_reference_links, observed 2026-08-14T14:28:38.257023Z

measured 16 of 16 standing notices

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Source: scholarly_work_events, retraction_status_cache, observed 2026-08-19T06:32:44.657259+00:00

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16 of 16 outbound references displayed

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Outbound references

Observation cbd67842-ec5d-4b41-ae82-55fbaafc1bba · outbound

This paper cites 1976, Progress of The oretical Physics, 56, 1756 Arakawa, S., Tanaka, H., Kataoka, A., & Nakamoto, T.

Photophoresis in the circumjovian disk and its impact on the orbital configuration of the Galilean satellites 1976, Progress of The oretical Physics, 56, 1756 Arakawa, S., Tanaka, H., Kataoka, A., & Nakamoto, T

Reference 1

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Observation 030a7dca-cd3e-4100-b1f8-86e50e3d851e · outbound

This paper cites 2013), Msat is the mass of the satellite, and Rsat is the radius of the satellite.

Photophoresis in the circumjovian disk and its impact on the orbital configuration of the Galilean satellites 2013), Msat is the mass of the satellite, and Rsat is the radius of the satellite

Reference 2

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Observation f4f59cdf-1039-426b-9240-d031f235a128 · outbound

This paper cites Here, we compare the photophoretic force FPh and the radiation force Frad.

Photophoresis in the circumjovian disk and its impact on the orbital configuration of the Galilean satellites Here, we compare the photophoretic force FPh and the radiation force Frad

Reference 3

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Observation f10bc67b-812f-4e8e-92db-7b51e66b606c · outbound

This paper cites Although the current magnetic field of Jupiter is 7.8 G, according to the observations from the Juno spacecraf t (Bolton et al.

Photophoresis in the circumjovian disk and its impact on the orbital configuration of the Galilean satellites Although the current magnetic field of Jupiter is 7.8 G, according to the observations from the Juno spacecraf t (Bolton et al

Reference 4

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Observation d7602c7b-412a-471f-93f9-8b828b8ac1a0 · outbound

This paper cites submitted).

Photophoresis in the circumjovian disk and its impact on the orbital configuration of the Galilean satellites submitted)

Reference 5

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Observation 686b17a3-77a2-417e-a0b7-443c3fce47a5 · outbound

This paper cites However, there is another requirement to make an inner cav- ity in a steady-state disk.

Photophoresis in the circumjovian disk and its impact on the orbital configuration of the Galilean satellites However, there is another requirement to make an inner cav- ity in a steady-state disk

Reference 6

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Observation 32e7d2f6-a3d4-499d-bed6-cfd6f2e05099 · outbound

This paper cites an unresolved cited work.

Photophoresis in the circumjovian disk and its impact on the orbital configuration of the Galilean satellites Unresolved cited work

Reference 7

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Observation c18e293d-95d4-4a8f-a817-c212c23d631e · outbound

This paper cites (B.3) Then, the planetary radius of young Jupiter would be as large as twice that of current Jupiter if we assumed conservation o f spin angular momentum.

Photophoresis in the circumjovian disk and its impact on the orbital configuration of the Galilean satellites (B.3) Then, the planetary radius of young Jupiter would be as large as twice that of current Jupiter if we assumed conservation o f spin angular momentum

Reference 8

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Observation df5f6288-51fd-47f2-b57b-5fdd39c12394 · outbound

This paper cites Appendix C: Radiation pressure The radiation pressure is caused by the direct momentum tran s- fer of photons.

Photophoresis in the circumjovian disk and its impact on the orbital configuration of the Galilean satellites Appendix C: Radiation pressure The radiation pressure is caused by the direct momentum tran s- fer of photons

Reference 9

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Observation c6a6cbaf-3944-4345-8eb7-14619bf0f664 · outbound

This paper cites In contrast to FPh, the residual gravity caused by gas drag FD is independent of a/ lm (Weidenschilling 1977): FD = − 4πa3 3 ρp ρg dp dr.

Photophoresis in the circumjovian disk and its impact on the orbital configuration of the Galilean satellites In contrast to FPh, the residual gravity caused by gas drag FD is independent of a/ lm (Weidenschilling 1977): FD = − 4πa3 3 ρp ρg dp dr

Reference 10

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Observation a00ea9ac-1190-4232-b76f-9614d670c1b4 · outbound

This paper cites (E.1) The heat conduction timescale within a dust particle, τcond, is (Krauss & Wurm 2005; Loesche & Wurm.

Photophoresis in the circumjovian disk and its impact on the orbital configuration of the Galilean satellites (E.1) The heat conduction timescale within a dust particle, τcond, is (Krauss & Wurm 2005; Loesche & Wurm

Reference 11

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Observation 897d02b8-5cb4-421e-b0f1-28a6df73cee7 · outbound

This paper cites an unresolved cited work.

Photophoresis in the circumjovian disk and its impact on the orbital configuration of the Galilean satellites Unresolved cited work

Reference 12

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Observation 7ac529ea-cf4c-4540-a5c4-88adc370912d · outbound

This paper cites The contribution of gas to the Rosseland mean opacity of a disk with solar metallicity, κR, g, is given by Freedman et al.

Photophoresis in the circumjovian disk and its impact on the orbital configuration of the Galilean satellites The contribution of gas to the Rosseland mean opacity of a disk with solar metallicity, κR, g, is given by Freedman et al

Reference 13

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Observation a4853fea-8513-4ad4-a385-811a67e1bea1 · outbound

This paper cites 8] −1 cm2 g−1.

Photophoresis in the circumjovian disk and its impact on the orbital configuration of the Galilean satellites 8] −1 cm2 g−1

Reference 14

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Observation 3635d6b6-61a4-4607-a456-5467aeb96ee0 · outbound

This paper cites Figure G.2 shows the surface density distribution of the dis k for various viscosity parameters.

Photophoresis in the circumjovian disk and its impact on the orbital configuration of the Galilean satellites Figure G.2 shows the surface density distribution of the dis k for various viscosity parameters

Reference 15

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Observation 172ac995-392b-4d3c-b533-f814ea9100d6 · outbound

This paper cites The migration timescale τmig is given by (e.g., Paardekooper et al.

Photophoresis in the circumjovian disk and its impact on the orbital configuration of the Galilean satellites The migration timescale τmig is given by (e.g., Paardekooper et al

Reference 16

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