Table 5: ELODIE orbital solution for 47 UMa, 70 Vir and HD 187123. The parameters have the same definitions as in Table 2.

  47 UMa b 70 Vir b HD 187123 b

P
(d) 1100.8 $\pm$ 7.2 116.689 $\pm$ 0.011 3.0966 $\pm$ 0.0001
T (JD $^\dagger$) 52 915 $\pm$ 64 48 990.39 $\pm$ 0.33 51 010.972 $\pm$ 0.027
e   0.097 $\pm$ 0.039 0.397 $\pm$ 0.005 0 (fixed)
$\gamma$ (km s$^{\rm -1}$) 11.220 $\pm$ 0.001 4.951 $\pm$ 0.001 -16.986 $^{\ddagger}$ $\pm$ 0.002
w ( $\hbox{$^\circ$ }$) 300 $\pm$ 20 359.40 $\pm$ 0.92 0 (fixed)
$K_{\rm 1}$ (m s$^{\rm -1}$) 53.6 $\pm$ 1.9 314.1 $\pm$ 2.0 70.7 $\pm$ 1.7
Slope (m s$^{\rm -1}$ yr$^{\rm -1}$) - - -8.9 $\pm$ 0.9
$a_{\rm 1} \sin i$ (10$^{\rm -5}$ AU) 540 $\pm$ 20 309 $\pm$ 2 2.01 $\pm$ 0.06
$f_{\rm 1}(m)$ (10 $^{\rm -10}$  $M_{\hbox{$\odot$ }}$) 173 $\pm$ 19 2897 $\pm$ 55 1.14 $\pm$ 0.10
$m\sin i$ ( $M_{\rm Jup}$) 2.76 $\pm$ 0.10 6.56 $\pm$ 0.04 0.52 $\pm$ 0.01
a (AU) 2.11 0.456 0.042

N
  44 35 57
$\sigma _{\rm O-C}$ (m s$^{\rm -1}$) 7.4 6.1 10.5
$\chi ^{\rm 2}_{\rm red}$   1.19 0.87 1.37
$^\dagger$JD-2 400 000, $^{\ddagger}$ at JD = 2 451 500.

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