SYNTHESIZING EXOPLANET DEMOGRAPHICS: A SINGLE POPULATION OF LONG-PERIOD PLANETARY COMPANIONS TO M DWARFS CONSISTENT WITH MICROLENSING, RADIAL VELOCITY, AND DIRECT IMAGING SURVEYS

被引:58
作者
Clanton, Christian [1 ]
Gaudi, B. Scott [1 ]
机构
[1] Ohio State Univ, Dept Astron, 174 W 18Th Ave, Columbus, OH 43210 USA
基金
美国国家科学基金会;
关键词
gravitational lensing: micro; methods: statistical; planets and satellites: general; stars: low-mass; techniques: high angular resolution; techniques: radial velocities; PROTOPLANETARY DISK STRUCTURES; EXTRASOLAR GIANT PLANETS; MILKY-WAY DISK; GALACTIC BULGE; MASSIVE PLANETS; DYNAMICAL MASS; GAS GIANTS; SNOW LINE; STARS; METALLICITY;
D O I
10.3847/0004-637X/819/2/125
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
We present the first study to synthesize results from five different exoplanet surveys using three independent detection methods: microlensing, radial velocity, and direct imaging. The constraints derived herein represent the most comprehensive picture of the demographics of large-separation (>2 AU) planets orbiting the most common stars in our Galaxy that has been constructed to date. We assume a simple, joint power-law planet distribution function of the form d(2)N(pl)/(d log m(p) d log a) = A(m(p)/M-sat)(alpha) (a/2.5 AU)(beta) with an outer cutoff radius of the separation distribution function of a(out). Generating populations of planets from these models and mapping them into the relevant observables for each survey, we use actual or estimated detection sensitivities to determine the expected observations for each survey. Comparing with the reported results, we derive constraints on the parameters {alpha, beta, A, a(out)} that describe a single population of planets that is simultaneously consistent with the results of microlensing, radial velocity, and direct imaging surveys. We find median and 68% confindence intervals of a = - 0.861(-0.19)(+0.21) (-0.851(-0.19)(+021) = 1.1(-14)(+1.9) (1.114 A = 0.21(-015)(+0.20) (0) i(5) dex(-2) (0.21 (0) i(5) dex-2), and a(out) = 10(-4.7)(+26)AU (12(-6.2)(+50) AU) assuming "hot-start" ("cold-start") planet evolutionary models. These values are consistent with all current knowledge of planets on orbits beyond similar to 2 AU around single M dwarfs.
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页数:42
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