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Showing 1 - 8 of 8 matches in All Departments

Reading Terrestrial Planet Evolution in Isotopes and Element Measurements (Paperback, 1st ed. 2021): Helmut Lammer, Bernard... Reading Terrestrial Planet Evolution in Isotopes and Element Measurements (Paperback, 1st ed. 2021)
Helmut Lammer, Bernard Marty, Aubrey Zerkle, Michel Blanc, Hugh O'Neill, …
R4,789 Discovery Miles 47 890 Ships in 10 - 15 working days

This volume takes an interdisciplinary approach to the evolution of terrestrial planets, addressing the topic from the perspectives of planetary sciences, geochemistry, geophysics and biology, and solar and astrophysics. The review papers analyze the chemical, isotopic and elemental evolution of the early Solar System, with specific emphasis on Venus, Earth, and Mars. They discuss how these factors contribute to our understanding of accretion timescales, volatile delivery, the origin of the Moon and the evolution of atmospheres and water inventories of terrestrial planets. Also explored are plate tectonic formation, the origin of nitrogen atmospheres and the prospects for exoplanet habitability.The papers are forward-looking as well, considering the importance of future space missions for understanding terrestrial planet evolution in the Solar System and beyond. Overall, this volume shall be useful for academic and professional audiences across a range of scientific disciplines. Previously published in Space Science Reviews in the Topical Collection "Reading Terrestrial Planet Evolution in Isotopes and Element Measurements"

Characterizing Stellar and Exoplanetary Environments (Paperback, Softcover reprint of the original 1st ed. 2015): Helmut... Characterizing Stellar and Exoplanetary Environments (Paperback, Softcover reprint of the original 1st ed. 2015)
Helmut Lammer, Maxim Khodachenko
R3,930 Discovery Miles 39 300 Ships in 10 - 15 working days

In this book an international group of specialists discusses studies of exoplanets subjected to extreme stellar radiation and plasma conditions. It is shown that such studies will help us to understand how terrestrial planets and their atmospheres, including the early Venus, Earth and Mars, evolved during the host star’s active early phase. The book presents an analysis of findings from Hubble Space Telescope observations of transiting exoplanets, as well as applications of advanced numerical models for characterizing the upper atmosphere structure and stellar environments of exoplanets. The authors also address detections of atoms and molecules in the atmosphere of “hot Jupiters” by NASA’s Spitzer telescope. The observational and theoretical investigations and discoveries presented are both timely and important in the context of the next generation of space telescopes. The book is divided into four main parts, grouping chapters on exoplanet host star radiation and plasma environments, exoplanet upper atmosphere and environment observations, exoplanet and stellar magnetospheres, and exoplanet observation and characterization. The book closes with an outlook on the future of this research field.

Characterizing Stellar and Exoplanetary Environments (Hardcover, 2015 ed.): Helmut Lammer, Maxim Khodachenko Characterizing Stellar and Exoplanetary Environments (Hardcover, 2015 ed.)
Helmut Lammer, Maxim Khodachenko
R3,002 Discovery Miles 30 020 Ships in 10 - 15 working days

In this book an international group of specialists discusses studies of exoplanets subjected to extreme stellar radiation and plasma conditions. It is shown that such studies will help us to understand how terrestrial planets and their atmospheres, including the early Venus, Earth and Mars, evolved during the host star's active early phase. The book presents an analysis of findings from Hubble Space Telescope observations of transiting exoplanets, as well as applications of advanced numerical models for characterizing the upper atmosphere structure and stellar environments of exoplanets. The authors also address detections of atoms and molecules in the atmosphere of "hot Jupiters" by NASA's Spitzer telescope. The observational and theoretical investigations and discoveries presented are both timely and important in the context of the next generation of space telescopes. The book is divided into four main parts, grouping chapters on exoplanet host star radiation and plasma environments, exoplanet upper atmosphere and environment observations, exoplanet and stellar magnetospheres, and exoplanet observation and characterization. The book closes with an outlook on the future of this research field.

Origin and Evolution of Planetary Atmospheres - Implications for Habitability (Paperback, 2013 ed.): Helmut Lammer Origin and Evolution of Planetary Atmospheres - Implications for Habitability (Paperback, 2013 ed.)
Helmut Lammer
R1,501 Discovery Miles 15 010 Ships in 10 - 15 working days

Based on the author s own work and results obtained by international teams he coordinated, this SpringerBrief offers a concise discussion of the origin and early evolution of atmospheres of terrestrial planets during the active phase of their host stars, as well as of the environmental conditions which are necessary in order for planets like the Earth to obtain N_2-rich atmospheres. Possible thermal and non-thermal atmospheric escape processes are discussed in a comparative way between the planets in the Solar System and exoplanets. Lastly, a hypothesis for how to test and study the discussed atmosphere evolution theories using future UV transit observations of terrestrial exoplanets within the orbits of dwarf stars is presented."

Planetary Aeronomy - Atmosphere Environments in Planetary Systems (Paperback, Softcover reprint of hardcover 1st ed. 2004):... Planetary Aeronomy - Atmosphere Environments in Planetary Systems (Paperback, Softcover reprint of hardcover 1st ed. 2004)
Siegfried Bauer, Helmut Lammer
R2,933 Discovery Miles 29 330 Ships in 10 - 15 working days

Planetary Aeronomy is a modern and concise introduction to the underlying physical and chemical processes that govern the formation and evolution of the upper atmospheres of planets. The general approach employed permits consideration of the growing number of extrasolar planets, the detailed observation of which will become possible over the next decades. The book explains the physics behind many atmospheric processes, which are relevant for the evolution of planetary atmospheres and their water inventories, and also contains useful scaling laws and analytical expressions that can be applied to any planet. Readers thus gain insight into the evolution of terrestrial planets and their long-time habitability, atmospheric stability, etc. This volume can be used both as graduate textbook for students wishing to specialize in the field as well as succinct compendium for researchers in the field.

Planetary Aeronomy - Atmosphere Environments in Planetary Systems (Hardcover, 2004 ed.): Siegfried Bauer, Helmut Lammer Planetary Aeronomy - Atmosphere Environments in Planetary Systems (Hardcover, 2004 ed.)
Siegfried Bauer, Helmut Lammer
R3,092 Discovery Miles 30 920 Ships in 10 - 15 working days

Planetary Aeronomy is a modern and concise introduction to the underlying physical and chemical processes that govern the formation and evolution of the upper atmospheres of planets. The general approach employed permits consideration of the growing number of extrasolar planets, the detailed observation of which will become possible over the next decades. The book explains the physics behind many atmospheric processes, which are relevant for the evolution of planetary atmospheres and their water inventories, and also contains useful scaling laws and analytical expressions that can be applied to any planet. Readers thus gain insight into the evolution of terrestrial planets and their long-time habitability, atmospheric stability, etc. This volume can be used both as graduate textbook for students wishing to specialize in the field as well as succinct compendium for researchers in the field.

Understanding the Diversity of Planetary Atmospheres (Paperback, 1st ed. 2022): Francois Forget, Oleg Korablev, Julia... Understanding the Diversity of Planetary Atmospheres (Paperback, 1st ed. 2022)
Francois Forget, Oleg Korablev, Julia Venturini, Takeshi Imamura, Helmut Lammer, …
R6,618 Discovery Miles 66 180 Ships in 10 - 15 working days

Thanks to the observation of a growing number of planetary atmospheres, we are at the dawn of a major scientific revolution in atmospheric and climate sciences. But are we ready to understand what will be discovered around other stars? This book brings together 15 review chapters that study and provide up-to-date information on the physical and chemical processes that control the nature of atmospheres. It identifies commonalities between various solar system atmospheres, analyzes the dynamic processes behind different atmospheric circulation regimes, and outlines key questions remaining in solar system science. Through this comprehensive overview, the volume will help researchers understand the possible nature of the exo-atmospheres to be discovered in the coming decades thanks to upcoming new generations of telescopes. Previously published in Space Science Reviews in the Topical Collection "Understanding the Diversity of Planetary Atmospheres"

From Disks to Planets - The Making of Planets and Their Early Atmospheres (Paperback, Softcover reprint of the original 1st ed.... From Disks to Planets - The Making of Planets and Their Early Atmospheres (Paperback, Softcover reprint of the original 1st ed. 2018)
Michel Blanc, Gregory J. Herczeg, Veerle Sterken, Helmut Lammer, Willy Benz, …
R2,191 Discovery Miles 21 910 Out of stock

This volume discusses the evolutionary paths linking planets and their atmospheres to their origin within circumstellar disks. It reviews the main phases of this evolution, summarizes what we understand and what are the important open questions, and suggests ways towards solutions. Dust accretion within disks generates planet cores, while gas accretion on these cores leads to the diversity of their fluid envelopes. The formation of planetary proto-atmospheres and oceans is an essential product of planet formation. A fraction of the planets retain their primary proto-atmosphere, while others lose it and may form a "secondary" atmosphere. When the disk finally dissipates, it leaves us with the combination of a planetary system and a debris disk. Using the next generation of observing facilities, we will be able to reconstruct more accurately the evolutionary paths linking stellar genesis to the possible emergence of habitable worlds. Originally published in Space Science Reviews, Volume 205, Issue 1-4, December 2016

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