Open Access

Table A.4

Fitted and physical parameters from the photo-dynamical model with TRADES.

parameters prior MAP (HDI 68.27%) High-precision parameters
stellar parameters
fitted
R* (R) G$\[\mathcal{G}\]$(0.697, 0.011) 0.6970.004+0.005$\[0.697_{-0.004}^{+0.005}\]$ 0.697
ρ* (ρ) G$\[\mathcal{G}\]$(2.13, 0.16) 2.200.04+0.04$\[2.20_{-0.04}^{+0.04}\]$
LD q1,CHEOPS U$\[\mathcal{U}\]$(0, 1) 0.500.03+0.07$\[0.50_{-0.03}^{+0.07}\]$
LD q2,CHEOPS U$\[\mathcal{U}\]$(0, 1) 0.210.11+0.06$\[0.21_{-0.11}^{+0.06}\]$
LD q1,TESS U$\[\mathcal{U}\]$(0, 1) 0.500.07+0.05$\[0.50_{-0.07}^{+0.05}\]$
LD q2,TESS U$\[\mathcal{U}\]$(0, 1) 0.270.09+0.12$\[0.27_{-0.09}^{+0.12}\]$
LD q1,ASTEP+B U$\[\mathcal{U}\]$(0, 1) 0.380.05+0.06$\[0.38_{-0.05}^{+0.06}\]$
LD q2,ASTEP+B U$\[\mathcal{U}\]$(0, 1) 0.70.2+0.1$\[0.7_{-0.2}^{+0.1}\]$
LD q1,ASTEP+R U$\[\mathcal{U}\]$(0, 1) 0.19590.0010+0.0859$\[0.1959_{-0.0010}^{+0.0859}\]$
LD q2,ASTEP+R U$\[\mathcal{U}\]$(0, 1) 0.80.5+0.1$\[0.8_{-0.5}^{+0.1}\]$ (2σ)
physical
M* (M) - 0.7450.009+0.007$\[0.745_{-0.009}^{+0.007}\]$ 0.745
LD u1,CHEOPS G$\[\mathcal{G}\]$(0.53, 0.04) 0.300.13+0.08$\[0.30_{-0.13}^{+0.08}\]$
LD u2,CHEOPS G$\[\mathcal{G}\]$(0.12, 0.07) 0.410.09+0.17$\[0.41_{-0.09}^{+0.17}\]$
LD u1,TESS G$\[\mathcal{G}\]$(0.66, 0.05) 0.40.1+0.2$\[0.4_{-0.1}^{+0.2}\]$
LD u2,TESS G$\[\mathcal{G}\]$(0.06, 0.09) 0.30.2+0.1$\[0.3_{-0.2}^{+0.1}\]$
LD u1,ASTEP+B G$\[\mathcal{G}\]$(0.37, 0.10) 0.80.1+0.2$\[0.8_{-0.1}^{+0.2}\]$
LD u2,ASTEP+B G$\[\mathcal{G}\]$(0.25, 0.10) 0.20.2+0.2$\[-0.2_{-0.2}^{+0.2}\]$
LD u1,ASTEP+R G$\[\mathcal{G}\]$(0.37, 0.10) 0.700.27+0.01$\[0.70_{-0.27}^{+0.01}\]$
LD u2,ASTEP+R G$\[\mathcal{G}\]$(0.25, 0.10) 0.30.1+0.5$\[-0.3_{-0.1}^{+0.5}\]$ (2σ)

planet b
fitted
log10(Mb/M*) U$\[\mathcal{U}\]$(−6.1, −3.1) 4.0970.003+0.002$\[-4.097_{-0.003}^{+0.002}\]$
Rb/R* U$\[\mathcal{U}\]$(0.00048, 1.71394) 0.04800.0003+0.0002$\[0.0480_{-0.0003}^{+0.0002}\]$
Pb (days) U$\[\mathcal{U}\]$(3.074, 5.074) 4.0745540.000441+0.000001$\[4.074554_{-0.000441}^{+0.000001}\]$ (2σ) 4.074554
e cos ωb$\[\sqrt{e} \cos \omega_{\mathrm{b}}\]$ U$\[\mathcal{U}\]$(−0.5, 0.5) 0.177770.00259+0.00003$\[-0.17777_{-0.00259}^{+0.00003}\]$ (2σ)
e sin ωb$\[\sqrt{e} \sin \omega_{\mathrm{b}}\]$ U$\[\mathcal{U}\]$(−0.5, 0.5) 0.14340.0003+0.0005$\[0.1434_{-0.0003}^{+0.0005}\]$
λb (°)24 U$\[\mathcal{U}\]$(0, 360) 120.810.04+0.13$\[120.81_{-0.04}^{+0.13}\]$ (2σ)
ib (°) U$\[\mathcal{U}\]$(70, 120) 87.490.08+0.02$\[87.49_{-0.08}^{+0.02}\]$ 87.494901
physical
Mb (M) - 19.80.3+0.2$\[19.8_{-0.3}^{+0.2}\]$ 19.833346
Kb (m s−1) - 9.670.05+0.08$\[9.67_{-0.05}^{+0.08}\]$
Rb (R) - 3.660.04+0.03$\[3.66_{-0.04}^{+0.03}\]$ 3.657
ρb(ρ) - 0.410.01+0.01$\[0.41_{-0.01}^{+0.01}\]$
ρb (g cm−3) - 2.230.06+0.06$\[2.23_{-0.06}^{+0.06}\]$
ab (au) - 0.04530.0002+0.0001$\[0.0453_{-0.0002}^{+0.0001}\]$ 0.045262
eb U$\[\mathcal{U}\]$(0, 0.25) 0.0521620.000002+0.000956$\[0.052162_{-0.000002}^{+0.000956}\]$ (2σ) 0.052162
ωb (°) - 141.110.09+0.47$\[141.11_{-0.09}^{+0.47}\]$ (2σ) 141.111127
M$\[\mathcal{M}\]$b (°) - 159.70.4+0.1$\[159.7_{-0.4}^{+0.1}\]$ (2σ) 159.696701
Ωb (°) 180 fixed -
Teq,1,b25(K) - 82523+23$\[825_{-23}^{+23}\]$
TSM1,b26 - 835+5$\[83_{-5}^{+5}\]$
Teq,2,b27 (K) - 98227+28$\[982_{-27}^{+28}\]$
TSM2,b28 - 986+6$\[98_{-6}^{+6}\]$

planet c
fitted
log10(Mc/M*) U$\[\mathcal{U}\]$(−4.87, −1.87) 2.86870.0025+0.0002$\[-2.8687_{-0.0025}^{+0.0002}\]$ (2σ)
Rc/R* U$\[\mathcal{U}\]$(0.00048, 1.71394) 0.1710.005+0.005$\[0.171_{-0.005}^{+0.005}\]$
Pc (days) U$\[\mathcal{U}\]$(7.35, 9.35) 8.35018980.0000010+0.0000938$\[8.3501898_{-0.0000010}^{+0.0000938}\]$ (2σ) 8.3501898
e cos ωc$\[\sqrt{e} \cos \omega_{\mathrm{c}}\]$ U$\[\mathcal{U}\]$(−0.5, 0.5) 0.19920.0022+0.0004$\[-0.1992_{-0.0022}^{+0.0004}\]$ (2σ)
e sin ωc$\[\sqrt{e} \sin \omega_{\mathrm{c}}\]$ U$\[\mathcal{U}\]$(−0.5, 0.5) 0.0090.001+0.002$\[-0.009_{-0.001}^{+0.002}\]$
λc (°) U$\[\mathcal{U}\]$(0, 360) 235.560.04+0.04$\[235.56_{-0.04}^{+0.04}\]$
ic (°) U$\[\mathcal{U}\]$(70, 120) 87.610.04+0.04$\[87.61_{-0.04}^{+0.04}\]$ 87.613475
Ωc (°) U$\[\mathcal{U}\]$(0, 360) 179.990.10+0.03$\[179.99_{-0.10}^{+0.03}\]$ (2σ) 179.993043
physical
Mc (M) - 3365+2$\[336_{-5}^{+2}\]$ 335.603435
Kc (m s−1) - 128.590.80+0.01$\[128.59_{-0.80}^{+0.01}\]$
Rc (R) - 13.00.4+0.4$\[13.0_{-0.4}^{+0.4}\]$ 12.983016
ρc(ρ) - 0.150.02+0.01$\[0.15_{-0.02}^{+0.01}\]$
ρc (g cm−3) - 0.840.09+0.08$\[0.84_{-0.09}^{+0.08}\]$
ac (au) - 0.07310.0003+0.0002$\[0.0731_{-0.0003}^{+0.0002}\]$ 0.073056
ec U$\[\mathcal{U}\]$(0, 0.25) 0.03980.0002+0.0009$\[0.0398_{-0.0002}^{+0.0009}\]$ (2σ) 0.039773
ωc (°) - 182.50.5+0.4$\[182.5_{-0.5}^{+0.4}\]$ 182.502357
M$\[\mathcal{M}\]$c (°) - 233.10.3+0.5$\[233.1_{-0.3}^{+0.5}\]$ 233.068994
Teq,1,c (K) - 65018+18$\[650_{-18}^{+18}\]$
TSM1,c - 13517+18$\[135_{-17}^{+18}\]$
Teq,2,c (K) - 77321+22$\[773_{-21}^{+22}\]$
TSM2,c - 16020+21$\[160_{-20}^{+21}\]$

radial velocities
fitted
γCHIRON (m s−1) U$\[\mathcal{U}\]$(−10567, −8567) 95684+4$\[-9568_{-4}^{+4}\]$
γharps (m s−1) U$\[\mathcal{U}\]$(−9023, −7023) 80231+3$\[-8023_{-1}^{+3}\]$
γPFS (m s−1) U$\[\mathcal{U}\]$(−960, −1040) 39.80.9+2.7$\[39.8_{-0.9}^{+2.7}\]$
log2 σjitter,CHIRON U$\[\mathcal{U}\]$(−13.29, 6.64) 0.110.3+0.2$\[0.1_{-10.3}^{+0.2}\]$
log2 σjitter,HARPS U$\[\mathcal{U}\]$(−13.29, 6.64) 1.30.2+0.2$\[1.3_{-0.2}^{+0.2}\]$
log2 σjitter,PFS U$\[\mathcal{U}\]$(−13.29, 6.64) 1.310.05+0.38$\[1.31_{-0.05}^{+0.38}\]$
RV linear trend (m s−1/d) U$\[\mathcal{U}\]$(−1, 1) 0.4860.026+0.009$\[0.486_{-0.026}^{+0.009}\]$
physical
σjitter,CHIRON (m s−1) - 11+6$\[1_{-1}^{+6}\]$ (2σ)
σjitter,HARPS (m s−1) - 2.50.3+0.3$\[2.5_{-0.3}^{+0.3}\]$
σjitter,PFS (m s−1) - 2.50.1+0.7$\[2.5_{-0.1}^{+0.7}\]$

CHEOPS photometry
fitted
f14 const.29 U$\[\mathcal{U}\]$(0.5, 1.5) 1.00430.0024+0.0005$\[1.0043_{-0.0024}^{+0.0005}\]$ (2σ)
d f14/dt U$\[\mathcal{U}\]$(−1, 1) 0.00150.0004+0.0004$\[-0.0015_{-0.0004}^{+0.0004}\]$
d f14/dx U$\[\mathcal{U}\]$(−1, 1) 0.00080.0003+0.0001$\[0.0008_{-0.0003}^{+0.0001}\]$ (2σ)
d2 f14/dx2 U$\[\mathcal{U}\]$(−1, 1) 0.000700.00034+0.00001$\[0.00070_{-0.00034}^{+0.00001}\]$
d f14/dy U$\[\mathcal{U}\]$(−1, 1) 0.00050.0001+0.0001$\[-0.0005_{-0.0001}^{+0.0001}\]$
d2 f14/dy2 U$\[\mathcal{U}\]$(−1, 1) 0.000340.00027+0.00001$\[0.00034_{-0.00027}^{+0.00001}\]$
d2 f14/d xdy U$\[\mathcal{U}\]$(−1, 1) 0.00050.0002+0.0003$\[-0.0005_{-0.0002}^{+0.0003}\]$
d f14/dbg U$\[\mathcal{U}\]$(−1, 1) 0.000860.00006+0.00072$\[-0.00086_{-0.00006}^{+0.00072}\]$
d f14/d cos ϕ30 U$\[\mathcal{U}\]$(−1, 1) 0.00350.0036+0.0008$\[0.0035_{-0.0036}^{+0.0008}\]$ (2σ)
d f14/d sin ϕ U$\[\mathcal{U}\]$(−1, 1) 0.00140.0004+0.0015$\[-0.0014_{-0.0004}^{+0.0015}\]$ (2σ)
d f14/d cos 2ϕ U$\[\mathcal{U}\]$(−1, 1) 0.00160.0016+0.0003$\[0.0016_{-0.0016}^{+0.0003}\]$ (2σ)
d f14/d sin 2ϕ U$\[\mathcal{U}\]$(−1, 1) 0.00160.0004+0.0016$\[-0.0016_{-0.0004}^{+0.0016}\]$ (2σ)
d f14/d cos 3ϕ U$\[\mathcal{U}\]$(−1, 1) 0.0002330.000239+0.000004$\[0.000233_{-0.000239}^{+0.000004}\]$
d f14/d sin 3ϕ U$\[\mathcal{U}\]$(−1, 1) 0.00070.0002+0.0007$\[-0.0007_{-0.0002}^{+0.0007}\]$ (2σ)
ASTEP+ B photometry
fitted
f1 const. U$\[\mathcal{U}\]$(0.5, 1.5) 1.00660.0008+0.0002$\[1.0066_{-0.0008}^{+0.0002}\]$
d f1/dt U$\[\mathcal{U}\]$(−1, 1) 0.0620.003+0.011$\[-0.062_{-0.003}^{+0.011}\]$
d2 f1/dt2 U$\[\mathcal{U}\]$(−1, 1) 0.1610.039+0.009$\[0.161_{-0.039}^{+0.009}\]$
d f1/dx U$\[\mathcal{U}\]$(−1, 1) 0.000150.00007+0.00006$\[-0.00015_{-0.00007}^{+0.00006}\]$
d f1/dy U$\[\mathcal{U}\]$(−1, 1) 0.00030.0002+0.0001$\[0.0003_{-0.0002}^{+0.0001}\]$
d f1/d fwhm U$\[\mathcal{U}\]$(−1, 1) 0.000330.00003+0.00022$\[0.00033_{-0.00003}^{+0.00022}\]$
d f1/dsky U$\[\mathcal{U}\]$(−1, 1) 0.000130.00014+0.00004$\[0.00013_{-0.00014}^{+0.00004}\]$
f2 const. U$\[\mathcal{U}\]$(0.5, 1.5) 1.00360.0007+0.0002$\[1.0036_{-0.0007}^{+0.0002}\]$
d f2/dt U$\[\mathcal{U}\]$(−1, 1) 0.0190.004+0.015$\[0.019_{-0.004}^{+0.015}\]$
d2 f2/dt2 U$\[\mathcal{U}\]$(−1, 1) 0.130.07+0.01$\[-0.13_{-0.07}^{+0.01}\]$
d f2/dx U$\[\mathcal{U}\]$(−1, 1) 0.0004490.000078+0.000002$\[-0.000449_{-0.000078}^{+0.000002}\]$
d f2/dy U$\[\mathcal{U}\]$(−1, 1) 0.000310.00003+0.00007$\[-0.00031_{-0.00003}^{+0.00007}\]$
d f2/d f whm U$\[\mathcal{U}\]$(−1, 1) 0.000320.00008+0.00005$\[-0.00032_{-0.00008}^{+0.00005}\]$
d f2/d sky U$\[\mathcal{U}\]$(−1, 1) 0.00110.0002+0.0001$\[0.0011_{-0.0002}^{+0.0001}\]$
f3 const. U$\[\mathcal{U}\]$(0.5, 1.5) 1.00040.0002+0.0002$\[1.0004_{-0.0002}^{+0.0002}\]$
d f3/dt U$\[\mathcal{U}\]$(−1, 1) 0.0090.002+0.001$\[-0.009_{-0.002}^{+0.001}\]$
d2 f3/dt2 U$\[\mathcal{U}\]$(−1, 1) 0.0370.002+0.004$\[0.037_{-0.002}^{+0.004}\]$
d f3/dx U$\[\mathcal{U}\]$(−1, 1) 0.000490.00001+0.00012$\[-0.00049_{-0.00001}^{+0.00012}\]$
d f3/dy U$\[\mathcal{U}\]$(−1, 1) 0.001010.00010+0.00004$\[-0.00101_{-0.00010}^{+0.00004}\]$
d f3/d f whm U$\[\mathcal{U}\]$(−1, 1) 0.000220.000007+0.000003$\[0.00022_{-0.000007}^{+0.000003}\]$
d f3/d sky U$\[\mathcal{U}\]$(−1, 1) 0.000070.00005+0.00007$\[-0.00007_{-0.00005}^{+0.00007}\]$
f4 const. U$\[\mathcal{U}\]$(0.5, 1.5) 0.99930.0003+0.0002$\[0.9993_{-0.0003}^{+0.0002}\]$
d f4/dt U$\[\mathcal{U}\]$(−1, 1) 0.0120.005+0.007$\[0.012_{-0.005}^{+0.007}\]$
d2 f4/dt2 U$\[\mathcal{U}\]$(−1, 1) 0.010.03+0.03$\[-0.01_{-0.03}^{+0.03}\]$
d f4/dx U$\[\mathcal{U}\]$(−1, 1) 0.000470.00015+0.00003$\[0.00047_{-0.00015}^{+0.00003}\]$
d f4/dy U$\[\mathcal{U}\]$(−1, 1) 0.0000110.000165+0.000008$\[0.000011_{-0.000165}^{+0.000008}\]$
d f4/d f whm U$\[\mathcal{U}\]$(−1, 1) 0.000110.00021+0.00003$\[0.00011_{-0.00021}^{+0.00003}\]$
d f4/d sky U$\[\mathcal{U}\]$(−1, 1) 0.00110.0003+0.0002$\[-0.0011_{-0.0003}^{+0.0002}\]$
f5 const. U$\[\mathcal{U}\]$(0.5, 1.5) 0.99980.0001+0.0004$\[0.9998_{-0.0001}^{+0.0004}\]$ (2σ)
d f5/dt U$\[\mathcal{U}\]$(−1, 1) 0.0030.009+0.002$\[0.003_{-0.009}^{+0.002}\]$ (2σ)
d2 f5/dt2 U$\[\mathcal{U}\]$(−1, 1) 0.0030.008+0.029$\[0.003_{-0.008}^{+0.029}\]$ (2σ)
d f5/dx U$\[\mathcal{U}\]$(−1, 1) 0.000140.00003+0.00005$\[0.00014_{-0.00003}^{+0.00005}\]$
d f5/dy U$\[\mathcal{U}\]$(−1, 1) 0.000020.00013+0.00003$\[-0.00002_{-0.00013}^{+0.00003}\]$ (2σ)
d f5/d f whm U$\[\mathcal{U}\]$(−1, 1) 0.0003670.000008+0.000067$\[0.000367_{-0.000008}^{+0.000067}\]$
d f5/d sky U$\[\mathcal{U}\]$(−1, 1) 0.000570.00030+0.00007$\[-0.00057_{-0.00030}^{+0.00007}\]$ (2σ)
ASTEP+ R photometry
fitted
f1 const. U$\[\mathcal{U}\]$(0.5, 1.5) 1.00530.0001+0.0003$\[1.0053_{-0.0001}^{+0.0003}\]$
d f1/dt U$\[\mathcal{U}\]$(−1, 1) 0.0360.005+0.002$\[-0.036_{-0.005}^{+0.002}\]$
d2 f1/dt2 U$\[\mathcal{U}\]$(−1, 1) 0.150.01+0.01$\[0.15_{-0.01}^{+0.01}\]$
d f1/dx U$\[\mathcal{U}\]$(−1, 1) 0.0002130.000064+0.000010$\[0.000213_{-0.000064}^{+0.000010}\]$
d f1/dy U$\[\mathcal{U}\]$(−1, 1) 0.0001460.000007+0.000077$\[0.000146_{-0.000007}^{+0.000077}\]$
d f1/d f whm U$\[\mathcal{U}\]$(−1, 1) 0.0006440.00020+0.00005$\[0.000644_{-0.00020}^{+0.00005}\]$ (2σ)
d f1/d sky U$\[\mathcal{U}\]$(−1, 1) 0.0000800.000134+0.000007$\[-0.000080_{-0.000134}^{+0.000007}\]$
f2 const. U$\[\mathcal{U}\]$(0.5, 1.5) 1.00690.0005+0.0002$\[1.0069_{-0.0005}^{+0.0002}\]$
d f2/dt U$\[\mathcal{U}\]$(−1, 1) 0.0280.004+0.011$\[-0.028_{-0.004}^{+0.011}\]$
d2 f2/dt2 U$\[\mathcal{U}\]$(−1, 1) 0.000.05+0.02$\[-0.00_{-0.05}^{+0.02}\]$
d f2/dx U$\[\mathcal{U}\]$(−1, 1) 0.000100.00007+0.00004$\[-0.00010_{-0.00007}^{+0.00004}\]$
d f2/dy U$\[\mathcal{U}\]$(−1, 1) 0.0000800.000007+0.000114$\[-0.000080_{-0.000007}^{+0.000114}\]$
d f2/d f whm U$\[\mathcal{U}\]$(−1, 1) 0.0002330.000147+0.000007$\[0.000233_{-0.000147}^{+0.000007}\]$
d f2/d sky U$\[\mathcal{U}\]$(−1, 1) 0.000900.00023+0.00007$\[-0.00090_{-0.00023}^{+0.00007}\]$
f3 const. U$\[\mathcal{U}\]$(0.5, 1.5) 0.99490.0001+0.0001$\[0.9949_{-0.0001}^{+0.0001}\]$
d f3/dt U$\[\mathcal{U}\]$(1, 1) 0.0580.001+0.001$\[0.058_{-0.001}^{+0.001}\]$
d2 f3/dt2 U$\[\mathcal{U}\]$(−1, 1) 0.1010.003+0.002$\[-0.101_{-0.003}^{+0.002}\]$
d f3/dx U$\[\mathcal{U}\]$(−1, 1) 0.000380.00001+0.00007$\[-0.00038_{-0.00001}^{+0.00007}\]$
d f3/dy U$\[\mathcal{U}\]$(−1, 1) 0.000460.00004+0.00005$\[0.00046_{-0.00004}^{+0.00005}\]$
d f3/d f whm U$\[\mathcal{U}\]$(−1, 1) 0.000170.00001+0.00005$\[0.00017_{-0.00001}^{+0.00005}\]$
d f3/d sky U$\[\mathcal{U}\]$(−1, 1) 0.0001380.000004+0.000059$\[0.000138_{-0.000004}^{+0.000059}\]$
f4 const. U$\[\mathcal{U}\]$(0.5, 1.5) 0.99850.0002+0.0007$\[0.9985_{-0.0002}^{+0.0007}\]$ (2σ)
d f4/dt U$\[\mathcal{U}\]$(−1, 1) 0.0480.016+0.005$\[0.048_{-0.016}^{+0.005}\]$ (2σ)
d2 f4/dt2 U$\[\mathcal{U}\]$(−1, 1) 0.1830.001+0.041$\[-0.183_{-0.001}^{+0.041}\]$
d f4/dx U$\[\mathcal{U}\]$(−1, 1) 0.000160.00002+0.00023$\[-0.00016_{-0.00002}^{+0.00023}\]$ (2σ)
d f4/dy U$\[\mathcal{U}\]$(−1, 1) 0.000250.00004+0.00011$\[-0.00025_{-0.00004}^{+0.00011}\]$
d f4/d f whm U$\[\mathcal{U}\]$(−1, 1) 0.000010.00009+0.00001$\[0.00001_{-0.00009}^{+0.00001}\]$
d f4/d sky U$\[\mathcal{U}\]$(−1, 1) 0.00010.0002+0.0001$\[0.0001_{-0.0002}^{+0.0001}\]$
f5 const. U$\[\mathcal{U}\]$(0.5, 1.5) 0.998520.00037+0.00006$\[0.99852_{-0.00037}^{+0.00006}\]$
d f5/dt U$\[\mathcal{U}\]$(−1, 1) 0.0220.002+0.005$\[0.022_{-0.002}^{+0.005}\]$
d2 f5/dt2 U$\[\mathcal{U}\]$(−1, 1) 0.0450.014+0.008$\[-0.045_{-0.014}^{+0.008}\]$
d f5/dx U$\[\mathcal{U}\]$(−1, 1) 0.000190.00020+0.00005$\[0.00019_{-0.00020}^{+0.00005}\]$ (2σ)
d f5/dy U$\[\mathcal{U}\]$(−1, 1) 0.000110.00015+0.00002$\[-0.00011_{-0.00015}^{+0.00002}\]$
d f5/d f whm U$\[\mathcal{U}\]$(−1, 1) 0.000220.00003+0.00007$\[-0.00022_{-0.00003}^{+0.00007}\]$
d f5/d sky U$\[\mathcal{U}\]$(−1, 1) 0.000440.00002+0.00014$\[0.00044_{-0.00002}^{+0.00014}\]$

Notes. Parameters as Maximum a Posteriori (MAP) and error as High Density Interval (HDI) at 68.27%, if the MAP is out-of HDI 68.27% the HDI at 95.44% is reported and indicated as 2σ. Last column shows the high-precision values of the principal parameters required for a precise N-body integration of the orbits. Osculating parameters at reference time tepoch = 2 458 657 BJDTDB.

Current usage metrics show cumulative count of Article Views (full-text article views including HTML views, PDF and ePub downloads, according to the available data) and Abstracts Views on Vision4Press platform.

Data correspond to usage on the plateform after 2015. The current usage metrics is available 48-96 hours after online publication and is updated daily on week days.

Initial download of the metrics may take a while.