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相关论文: Habitable Zone Dependence on Stellar Parameter Unc…

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Exoplanet habitability is traditionally assessed by comparing a planet's semi-major axis to the location of its host star's "habitable zone," the shell around a star for which Earth-like planets can possess liquid surface water. The Kepler…

地球与行星天体物理 · 物理学 2015-10-01 Rory Barnes , Victoria S. Meadows , Nicole Evans

By now, observations of exoplanets have found more than 50 binary star systems hosting 71 planets. We expect these numbers to increase as more than 70% of the main sequence stars in the solar neighborhood are members of binary or multiple…

地球与行星天体物理 · 物理学 2015-05-28 D. Bancelin , E. Pilat-Lohinger , S. Eggl , R. Dvorak

The NASA Kepler mission has discovered thousands of new planetary candidates, many of which have been confirmed through follow-up observations. A primary goal of the mission is to determine the occurrance rate of terrestrial-size planets…

Approximately 60 percent of all stars in the solar neighbourhood (up to 80 percent in our Milky Way) are members of binary or multiple star systems. This fact led to the speculations that many more planets may exist in binary systems than…

地球与行星天体物理 · 物理学 2016-11-23 Richard Schwarz , Barbara Funk , Ákos Bazsó

We use a one-dimensional (1-D) cloud-free climate model to estimate habitable zone (HZ) boundaries for terrestrial planets of masses 0.1 M$_{E}$ and 5 M$_{E}$ around circumbinary stars of various spectral type combinations. Specifically, we…

地球与行星天体物理 · 物理学 2020-01-08 Wolf Cukier , Ravi kumar Kopparapu , Stephen R. Kane , William Welsh , Eric Wolf , Veselin Kostov , Jacob Haqq-Misra

Identifying terrestrial planets in the habitable zones (HZs) of other stars is one of the primary goals of ongoing radial velocity and transit exoplanet surveys and proposed future space missions. Most current estimates of the boundaries of…

The continuing exploration of neighboring planetary systems is providing deeper insights into the relative prevalence of various system architectures, particularly with respect to the solar system. However, a full assessment of the…

地球与行星天体物理 · 物理学 2026-03-24 Stephen R. Kane , Jennifer A. Burt

A stellar evolution computer model has been used to determine changes in the luminosity L and effective temperature T(e) of single stars during their time on the main sequence. The range of stellar masses investigated was from 0.5 to 1.5…

天体物理学 · 物理学 2009-11-10 David R. Underwood , Barrie W. Jones , P. Nick Sleep

We study the temporal evolution of the habitable zone (HZ) of low-mass stars - only due to stellar evolution - and evaluate the related uncertainties. These uncertainties are then compared with those due to the adoption of different climate…

太阳与恒星天体物理 · 物理学 2015-06-19 G. Valle , M. Dell'Omodarme , P. G. Prada Moroni , S. Degl'Innocenti

The habitable zone (HZ) is the circumstellar region where a planet can sustain surface liquid water. Searching for terrestrial planets in the HZ of nearby stars is the stated goal of ongoing and planned extrasolar planet surveys. Previous…

地球与行星天体物理 · 物理学 2013-07-03 Jun Yang , Nicolas B. Cowan , Dorian S. Abbot

The habitable zone (HZ) describes the range of orbital distances around a star where the existence of liquid water on the surface of an Earth-like planet is in principle possible. While 3D climate studies can calculate the water vapor, ice…

地球与行星天体物理 · 物理学 2016-07-20 M. Godolt , J. L. Grenfell , D. Kitzmann , M. Kunze , U. Langematz , A. B. C. Patzer , H. Rauer , B. Stracke

Contrary to Earth, which has a small orbital eccentricity, some exoplanets discovered in the insolation habitable zone (HZ) have high orbital eccentricities (e.g., up to an eccentricity of $\sim0.97$ for HD~20782~b). This raises the…

地球与行星天体物理 · 物理学 2016-06-22 Emeline Bolmont , Anne-Sophie Libert , Jérémy Leconte , Franck Selsis

The investigation of exoplanetary habitability is integral to advancing our knowledge of extraterrestrial life potential and detailing the environmental conditions of distant worlds. In this analysis, we explore the properties of exoplanets…

地球与行星天体物理 · 物理学 2024-08-20 Jonathan H. Jiang , Philip E. Rosen , Christina X. Liu , Qianzhuang Wen , Yanbei Chen

With the discovery of hundreds of exoplanets and a potentially huge number of Earth-like planets waiting to be discovered, the conditions for their habitability have become a focal point in exoplanetary research. The classical picture of…

地球与行星天体物理 · 物理学 2015-06-22 M. Guedel , R. Dvorak , N. Erkaev , J. Kasting , M. Khodachenko , H. Lammer , E. Pilat-Lohinger , H. Rauer , I. Ribas , B. E. Wood

How do habitable environments arise and evolve within the context of their planetary systems? This is one fundamental question, and it can be addressed partly by identifying how planets in habitable zones obtain water. Historically,…

天体物理仪器与方法 · 物理学 2025-10-10 Yasuhiro Hasegawa , Courtney Dressing , Ludmila Carone

As a contribution to the study of the habitability of extrasolar planets, we implemented a 1-D Energy Balance Model (EBM), the simplest seasonal model of planetary climate, with new prescriptions for most physical quantities. Here we apply…

地球与行星天体物理 · 物理学 2015-06-15 Giovanni Vladilo , Giuseppe Murante , Laura Silva , Antonello Provenzale , Gaia Ferri , Gregorio Ragazzini

The aim of my dissertation is to investigate habitability in extra-Solar Systems. Most of the time, only planets are considered as possible places where extraterrestrial life can emerge and evolve, however, their moons could be inhabited,…

地球与行星天体物理 · 物理学 2017-04-26 Vera Dobos

A habitable exoplanet is a world that can maintain stable liquid water on its surface. Techniques and approaches to characterizing such worlds are essential, as performing a census of Earth-like planets that may or may not have life will…

地球与行星天体物理 · 物理学 2024-01-22 Tyler D. Robinson

The concept of the Circumstellar Habitable Zone has served the scientific community well for some decades. It slips easily off the tongue, and it would be hard to replace. Recently, however, several workers have postulated types of…

地球与行星天体物理 · 物理学 2009-12-15 Martin J. Heath , Laurance R. Doyle