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The TESS-keck survey. III. A stellar obliquity measurement of TOI-1726 c

Authors :
Dai, F
Dai, F
Roy, A
Fulton, B
Robertson, P
Hirsch, L
Isaacson, H
Albrecht, S
Mann, AW
Kristiansen, MH
Batalha, NM
Beard, C
Behmard, A
Chontos, A
Crossfield, IJM
Dalba, PA
Dressing, C
Giacalone, S
Hill, M
Howard, AW
Huber, D
Kane, SR
Kosiarek, M
Lubin, J
Mayo, A
Mocnik, T
Akana Murphy, JM
Petigura, EA
Rosenthal, L
Rubenzahl, RA
Scarsdale, N
Weiss, LM
van Zandt, J
Ricker, GR
Vanderspek, R
Latham, DW
Seager, S
Winn, JN
Jenkins, JM
Caldwell, DA
Charbonneau, D
Daylan, T
Günther, MN
Morgan, E
Quinn, SN
Rose, ME
Smith, JC
Dai, F
Dai, F
Roy, A
Fulton, B
Robertson, P
Hirsch, L
Isaacson, H
Albrecht, S
Mann, AW
Kristiansen, MH
Batalha, NM
Beard, C
Behmard, A
Chontos, A
Crossfield, IJM
Dalba, PA
Dressing, C
Giacalone, S
Hill, M
Howard, AW
Huber, D
Kane, SR
Kosiarek, M
Lubin, J
Mayo, A
Mocnik, T
Akana Murphy, JM
Petigura, EA
Rosenthal, L
Rubenzahl, RA
Scarsdale, N
Weiss, LM
van Zandt, J
Ricker, GR
Vanderspek, R
Latham, DW
Seager, S
Winn, JN
Jenkins, JM
Caldwell, DA
Charbonneau, D
Daylan, T
Günther, MN
Morgan, E
Quinn, SN
Rose, ME
Smith, JC
Source :
Astronomical Journal; vol 160, iss 4, 193-193; 0004-6256
Publication Year :
2020

Abstract

We report the measurement of a spectroscopic transit of TOI-1726c, one of two planets transiting a G-type star with V = 6.9 in the Ursa Major Moving Group (∼400 Myr). With a precise age constraint from cluster membership, TOI-1726 provides a great opportunity to test various obliquity excitation scenarios that operate on different timescales. By modeling the Rossiter-McLaughlin (RM) effect, we derived a sky-projected obliquity of -1-+3235∘. This result rules out a polar/retrograde orbit and is consistent with an aligned orbit for planet c. Considering the previously reported, similarly prograde RM measurement of planet b and the transiting nature of both planets, TOI-1726 tentatively conforms to the overall picture that compact multitransiting planetary systems tend to have coplanar, likely aligned orbits. TOI-1726 is also a great atmospheric target for understanding differential atmospheric loss of sub-Neptune planets (planet b 2.2 R☉ and c 2.7 R☉ both likely underwent photoevaporation). The coplanar geometry points to a dynamically cold history of the system that simplifies any future modeling of atmospheric escape.

Details

Database :
OAIster
Journal :
Astronomical Journal; vol 160, iss 4, 193-193; 0004-6256
Notes :
application/pdf, Astronomical Journal vol 160, iss 4, 193-193 0004-6256
Publication Type :
Electronic Resource
Accession number :
edsoai.on1367386232
Document Type :
Electronic Resource