A new mass and radius determination of the ultra-short period planet K2-106b and the fluffy planet K2-106c

Author:

Guenther E W1ORCID,Goffo E12,Sebastian D3ORCID,Smith A M S4ORCID,Persson C M5,Fridlund M56ORCID,Gandolfi D2ORCID,Korth J7

Affiliation:

1. Thüringer Landessternwarte Tautenburg , Sternwarte 5, D-07778 Tautenburg , Germany

2. Dipartimento di Fisica, Universita degli Studi di Torino , via Pietro Giuria 1, I-10125 Torino , Italy

3. School of Physics and Astronomy University of Birmingham, Birmingham University , Edgbaston Park Rd, Birmingham B15 2TT , UK

4. Institute of Planetary Research, German Aerospace Center (DLR), Rutherfordstrasse 2, D-12489 Berlin, , D-12489 Berlin , Germany

5. Department of Space, Earth and Environment, Chalmers University of Technology , Onsala Space Observatory, SE-439 92 Onsala , Sweden

6. Leiden Observatory, University of Leiden , PO Box 9513, NL-2300 RA Leiden , the Netherlands

7. Lund Observatory, Division of Astrophysics, Department of Physics, Lund University , Box 118, SE-22100 Lund , Sweden

Abstract

ABSTRACT Ultra-short period planets (USPs) have orbital periods of less than 1 d. Since their masses and radii can be determined to a higher precision than long-period planets, they are the preferred targets to determine the density of planets which constrains their composition. The K2-106 system is particularly interesting because it contains two planets of nearly identical masses. One is a high-density USP, the other is a low-density planet that has an orbital period of 13 d. Combining the Gaia DR3 results with new ESPRESSO data allows us to determine the masses and radii of the two planets more precisely than before. We find that the USP K2-106 b has a density consistent with an Earth-like composition, and K2-106 c is a low-density planet that presumably has an extended atmosphere. We measure a radius of $\rm R_p=1.676_{-0.037}^{+0.037}$$\rm R_{{\oplus }}$, a mass of $\rm M_p=7.80_{-0.70}^{+0.71}$M⊕, and a density of $\rm \rho =9.09_{-0.98}^{+0.98}$$\rm g\, cm^{-3}$ for K2-106 b. For K2-106 c, we derive $R_p=2.84_{-0.08}^{+0.10}$$\rm R_{{\oplus }}$, $M_p=7.3_{-2.4}^{+2.5}$$\rm M_{{\oplus }}$, and a density of $\rm \rho = 1.72_{-0.58}^{+0.66}$$\rm g\, cm^{-3}$. We finally discuss the possible structures of the two planets with respect to other low-mass planets.

Funder

DFG

Swedish National Space Agency

Swedish Research Council

European Research Council

Publisher

Oxford University Press (OUP)

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