Formation, Evolution, and Dynamics of Young Solar Systems [electronic resource] / edited by Martin Pessah, Oliver Gressel.

Інтелектуальна відповідальність: Вид матеріалу: Текст Серія: Astrophysics and Space Science Library ; 445Публікація: Cham : Springer International Publishing : Imprint: Springer, 2017Видання: 1st ed. 2017Опис: XIV, 374 p. 80 illus. in color. online resourceТип вмісту:
  • text
Тип засобу:
  • computer
Тип носія:
  • online resource
ISBN:
  • 9783319606095
Тематика(и): Додаткові фізичні формати: Printed edition:: Немає назви; Printed edition:: Немає назви; Printed edition:: Немає назвиДесяткова класифікація Дьюї:
  • 523.01 23
Класифікація Бібліотеки Конгресу:
  • QB460-466
Електронне місцезнаходження та доступ:
Вміст:
Tracing the Ingredients of Habitable Worlds -- Planet Traps and the Composition of Exoplanetary Populations -- Towards a Global Evolutionary Picture of Protoplanetary Disks -- The ALMA revolution: gas and dust in planet-forming disks -- Evolution of the first embryos in protoplanetary disks: Confronting models and observations -- The gas content of protoplanetary disks -- Formation and long-term behavior of the solar system bodies -- planet formation mechanisms -- Collisional evolution of planetesimals -- Paleomagnetic measurements in meteorites -- Debris Disks -- Accreting Protoplanetary and Circumplanetary Disks -- Spirals, Gaps, and Cavities: Signposts of Forming Planets in Protoplanetary Disks? -- planet formation in circumbinary systems -- Glimpsing the Composition Distribution of Short-Period Exoplanets -- Formation of close-in Kepler Planets -- Tidal star-planet interactions in hot Jupiter systems -- Insights into Planet Formation from Transit Timing Variations.
У: Springer eBooksЗведення: This book's interdisciplinary scope aims at bridging various communities: 1) cosmochemists, who study meteoritic samples from our own solar system, 2) (sub-) millimetre astronomers, who measure the distribution of dust and gas of star-forming regions and planet-forming discs, 3) disc modellers, who describe the complex photo-chemical structure of parametric discs to fit these to observation, 4) computational astrophysicists, who attempt to decipher the dynamical structure of magnetised gaseous discs, and the effects the resulting internal structure has on the aerodynamic re-distribution of embedded solids, 5) theoreticians in planet formation theory, who aim to piece it all together eventually arriving at a coherent holistic picture of the architectures of planetary systems discovered by 6) the exoplanet observers, who provide us with unprecedented samples of exoplanet worlds. Combining these diverse fields the book sheds light onto the riddles that research on planet formation is currently confronted with, and paves the way for a comprehensive understanding of the formation, evolution, and dynamics of young solar systems. The chapters ‘Chondrules – Ubiquitous Chondritic Solids Tracking the Evolution of the Solar Protoplanetary Disk’, ‘Dust Coagulation with Porosity Evolution’ and ‘The Emerging Paradigm of Pebble Accretion’ are published open access under a CC BY 4.0 license via link.springer.com.
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Tracing the Ingredients of Habitable Worlds -- Planet Traps and the Composition of Exoplanetary Populations -- Towards a Global Evolutionary Picture of Protoplanetary Disks -- The ALMA revolution: gas and dust in planet-forming disks -- Evolution of the first embryos in protoplanetary disks: Confronting models and observations -- The gas content of protoplanetary disks -- Formation and long-term behavior of the solar system bodies -- planet formation mechanisms -- Collisional evolution of planetesimals -- Paleomagnetic measurements in meteorites -- Debris Disks -- Accreting Protoplanetary and Circumplanetary Disks -- Spirals, Gaps, and Cavities: Signposts of Forming Planets in Protoplanetary Disks? -- planet formation in circumbinary systems -- Glimpsing the Composition Distribution of Short-Period Exoplanets -- Formation of close-in Kepler Planets -- Tidal star-planet interactions in hot Jupiter systems -- Insights into Planet Formation from Transit Timing Variations.

This book's interdisciplinary scope aims at bridging various communities: 1) cosmochemists, who study meteoritic samples from our own solar system, 2) (sub-) millimetre astronomers, who measure the distribution of dust and gas of star-forming regions and planet-forming discs, 3) disc modellers, who describe the complex photo-chemical structure of parametric discs to fit these to observation, 4) computational astrophysicists, who attempt to decipher the dynamical structure of magnetised gaseous discs, and the effects the resulting internal structure has on the aerodynamic re-distribution of embedded solids, 5) theoreticians in planet formation theory, who aim to piece it all together eventually arriving at a coherent holistic picture of the architectures of planetary systems discovered by 6) the exoplanet observers, who provide us with unprecedented samples of exoplanet worlds. Combining these diverse fields the book sheds light onto the riddles that research on planet formation is currently confronted with, and paves the way for a comprehensive understanding of the formation, evolution, and dynamics of young solar systems. The chapters ‘Chondrules – Ubiquitous Chondritic Solids Tracking the Evolution of the Solar Protoplanetary Disk’, ‘Dust Coagulation with Porosity Evolution’ and ‘The Emerging Paradigm of Pebble Accretion’ are published open access under a CC BY 4.0 license via link.springer.com.

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