The Birth of Our Solar System
From Dust to Planets and Beyond
- 1st Edition - March 1, 2027
- Latest edition
- Authors: Ritesh Kumar Mishra, Kuljeet Kaur Marhas
- Language: English
The Birth of Our Solar System: Dust to Planets and Beyond presents a comprehensive exploration of the origin and early evolution of the Solar System, integrating planetary scienc… Read more
Description
Description
The Birth of Our Solar System: Dust to Planets and Beyond presents a comprehensive exploration of the origin and early evolution of the Solar System, integrating planetary science, cosmochemistry, and astrophysics. It addresses fundamental questions about the Sun–planet system’s birth, the formation of CAIs and chondrites, and the early solar nebula’s evolution, placing Earth’s emergence in broader cosmic context. The narrative progresses through chapters on the beginning, genesis of the universe, solar-system birth scenarios, homogeneity, early solar-system events, and exoplanetary perspectives, supported by theory, observations, and laboratory results. The book aims to equip researchers, graduate students, and educators with a cohesive framework to understand initial solar-system conditions, the processes that shaped planetary architectures, and the implications for planetary habitability and life's origins. Readers will gain a holistic view of cosmochemical timelines, isotopic chronologies, and geochemical signatures that anchor our understanding of planetary formation, enabling cross-disciplinary dialogue and informed interpretation of meteoritic and astronomical data.
Key features
Key features
- Synthesizes planetary science, cosmochemistry, and cosmology to illuminate Solar System origins
- Explains formation timelines from CAIs to planet formation with accessible narrative
- Illustrates concepts with diagrams, tables, and figures to support understanding
- Provides modular chapters enabling independent reading and teaching applications
Readership
Readership
Planetary scientists and cosmochemists, astrophysicists
Table of contents
Table of contents
1. The BEGINNING: Being in "G/g"
2. (Big-Bang) Birth/ Genesis of the Universe
3. Solar System Birth: With Bang or Bleat Aster(ix) or Obelix
4. Homogeneity at Birth: To be or NOT to be
5. Bellicose at Birth: Billion times Bright
6. Exoplanetary Systems and Solar system
2. (Big-Bang) Birth/ Genesis of the Universe
3. Solar System Birth: With Bang or Bleat Aster(ix) or Obelix
4. Homogeneity at Birth: To be or NOT to be
5. Bellicose at Birth: Billion times Bright
6. Exoplanetary Systems and Solar system
Product details
Product details
- Edition: 1
- Latest edition
- Published: March 1, 2027
- Language: English
About the authors
About the authors
RM
Ritesh Kumar Mishra
Ritesh Kumar Mishra is an isotope cosmochemist and remote sensing researcher with extensive experience in planetary science, geochronology, and instrumentation. He has been a NASA NPP Fellow at Johnson Space Center and a Humboldt Fellow at Heidelberg, with research stints at Carnegie Institution and Smithsonian. He has advised on SIMS instrumentation installations and operator training for the Geological Survey of India and Inter University Accelerator Centre, and contributed to Europlanet 2024 grant projects. He serves as a NASA reviewer for fellowships, and has consulted for Ametek Cameca. His work bridges cosmochemistry and remote sensing through isotope measurements and data integration.
KM
Kuljeet Kaur Marhas
Kuljeet Kaur Marhas, is a planetary scientist and isotope cosmochemist. Her research spans planetary materials, meteoritics, and geochronology, with emphasis on isotopic and elemental analyses of meteorites (including Apollo, Wild-2, Itokawa, and Ryugu) to illuminate the origins and evolution of the early solar system. She also investigates stellar nucleosynthesis through presolar grains and the role of organics in protoplanetary environments.
Her career includes high-profile fellowships and appointments: Fulbright Fellow at the Carnegie Institution of Sciences (2022–23), NASA NPP Fellow at Johnson Space Center (2014–16), and Alexander von Humboldt Fellow at Heidelberg (2016–18). She has advised on numerous research projects, led instrument-related collaborations (e.g., SIMS developments), and collaborated with NASA, CNRS, JAXA, and other international institutions. Dr. Marhas serves on multiple scientific committees and editorial boards, chairs and co-chairs sessions at international meetings, and mentors a broad cohort of students and early-career researchers, contributing to capacity-building in planetary science and cosmochemistry.