Shape of Inner Space: String Theory and the Geometry of the Universe's Hidden Dimensions [Kõva köide]

  • Formaat: Hardback, 400 pages, kõrgus x laius x paksus: 236x156x34 mm, kaal: 635 g, Illustrations
  • Ilmumisaeg: 23-Sep-2010
  • Kirjastus: Basic Civitas Books
  • ISBN-10: 0465020232
  • ISBN-13: 9780465020232
Teised raamatud teemal:
  • Formaat: Hardback, 400 pages, kõrgus x laius x paksus: 236x156x34 mm, kaal: 635 g, Illustrations
  • Ilmumisaeg: 23-Sep-2010
  • Kirjastus: Basic Civitas Books
  • ISBN-10: 0465020232
  • ISBN-13: 9780465020232
Teised raamatud teemal:
Argues that geometry is fundamental to string theory--which posits that we live in a 10-dimensional existence--as well as the very nature of the universe, and explains where mathematics will take string theory next.

Argues that geometry is fundamental to string theory--which posits that we live in a ten-dimensional existence--as well as the very nature of the universe, and explains where mathematics will take string theory next.

String theory says we live in a ten-dimensional universe, but that only four are accessible to our everyday senses. According to theorists, the missing six are curled up in bizarre structures known as Calabi-Yau manifolds. Here, Shing-Tung Yau, the man who mathematically proved that these manifolds exist, argues that not only is geometry fundamental to string theory, it is also fundamental to the very nature of our universe. Time and again, where Yau has gone, physics has followed. Now for the first time, readers will follow Yau's penetrating thinking on where we've been, and where mathematics will take us next. A fascinating exploration of a world we are only just beginning to grasp, The Shape of Inner Space will change the way we consider the universe on both its grandest and smallest scales.--From publisher description.



String theory says we live in a ten-dimensional universe, but that only four are accessible to our everyday senses. According to theorists, the missing six are curled up in bizarre structures known as Calabi-Yau manifolds. In The Shape of Inner Space, Shing-Tung Yau, the man who mathematically proved that these manifolds exist, argues that not only is geometry fundamental to string theory, it is also fundamental to the very nature of our universe.

Time and again, where You has gone, physics has followed. Now for the first time, readers will follow Yau’s penetrating thinking on where we’ve been, and where mathematics will take us next. A fascinating exploration of a world we are only just beginning to grasp, The Shape of Inner Space will change the way we consider the universe on both its grandest and smallest scales.



The leading mind behind the mathematics of string theory discusses how geometry explains the universe we see

Arvustused

BLURBS Brian Greene, Professor of Mathematics & Physics, Columbia University; author of The Fabric of the Cosmos and The Elegant Universe "The Shape of Inner Space provides a vibrant tour through the strange and wondrous possibility that the three spatial dimensions we see may not be the only ones that exist. Told by one of the masters of the subject, the book gives an in-depth account of one of the most exciting and controversial developments in modern theoretical physics." Joe Polchinski, Professor of Physics, University of California - Santa Barbara; author of String Theory, Vols. 1 & 2 "Einstein's vision of physical laws emerging from the shape of space has been expanded by the higher dimensions of string theory. This vision has transformed not only modern physics, but also modern mathematics. Shing-Tung Yau has been at the center of these developments. In this ambitious book, written Newsletter of the European Mathematical Society American Journal of Physics "The Shape of Inner Space is a portrait of a beautiful branch of geometric analysis as seen through the eyes of one of its pioneers, Fields medal winner Shing-Tung Yau... After describing the sequence of events that led him to the United States and to his enamoration with geometry, Yau explains as only a master could the conjecture by Calabi and the subsequent discovery of Calabi-Yau manifolds that are the centerpiece of this book. The reader is thrown into a world of complex manifolds, geometric analysis, and differential equations, yet the book is written so that the persistent layperson could follow all of the main ideas."Notes of the Canadian Mathematical Society "In the fascinating book, The Shape of Inner Space... Shing-Tung Yau, along with coauthor Steve Nadis, describes the exciting development of the theory of what are now called Calabi-Yau manifolds and their relationship to the structure of the universe." Philippine Daily Inquirer "A journey into the mind of a brilliant mathematician, The Shape of Inner Space will delight readers who are not afraid to use their minds." College Mathematics Journal"A worthy successor to The Elegant Universe." "Philippine Daily Inquirer" "A journey into the mind of a brilliant mathematician, "The Shape of Inner Space" will delight readers who are not afraid to use their minds.""College Mathematics Journal""A worthy successor to "The Elegant Universe"." "Philippine Daily Inquirer" "A journey into the mind of a brilliant mathematician, "The Shape of Inner Space" will delight readers who are not afraid to use their minds." "The Mathematical Intelligencer""What makes this book unique is that Yau has a deep insight not only into the mathematics but also into the physics governing our universe, and he uses this knowledge to build a bridge between both worlds." BLURBS Brian Greene, Professor of Mathematics & Physics, Columbia University; author of "The Fabric of the Cosmos" and "The Elegant Universe """The Shape of Inner Space" provides a vibrant tour through the strange and wondrous possibility that the three spatial dimensions we see may not be the only ones that exist. Told by one of the masters of the subject, the book gives an in-depth account of one of the most exciting and controversial developments in modern theoretical physics." Joe Polchinski, Professor of Physics, University of California - Santa Barbara; author of "String Theory"," Vols. 1 & 2" "Einstein's vision of physical laws emerging from the shape of space has been expanded by the higher dimensions of string theory. This vision has transformed not only modern physics, but also modern mathematics. Shing-Tung Yau has been at the center of these developments. In this ambitious book, writtenNewsletter of the European Mathematical Society"An interested reader, even one with little background in mathematics, will be able to gather much new knowledge of, and appreciation for, both mathematics and physics from the elegant analogies and beautiful illustrations in this book... The book gives insight into the mind of one of the world's greatest mathematicians and will provide intellectual stimulation to interested readers with any kind of background." Simon Donaldson, Royal Society Research Professor in Pure Mathematics and President of the Institute for Mathematical Science, ImperialCollegeLondon ""The Shape of Inner Space" has a distinctive style: in part autobiography, in part an account of developments in geometric analysis and string theory over the past 40 years, and comments on future directions. It gives a unique insight into the thoughts of one of the most important and influential mathematicians of our times." Edward Witten, Professor, Institute for Advanced Study "Shing-Tung Yau and Steve Nadis take the reader on a fascinati AUTHORS' STATEMENT by SHING-TUNG YAU and STEVE NADIS There is a certain irony running through this book that one of the smallest things you can possibly imagine--six-dimensional geometric spaces that may be more than a trillion times smaller than an electron--could, nevertheless, be one of the defining features of our universe, exerting a profound influence that extends to every single point in the cosmos. This book is, in many ways, the story of those spaces, which physicists have dubbed "Calabi-Yau manifolds." It tells how one of us, Yau, managed to prove the existence, mathematically, of those spaces, despite the fact that he had originally set out to prove that such spaces could not possibly exist. It then goes on to explain how this mathematical proof, which had initially been ignored by physicists (partly because it was steeped in difficult, nonlinear arguments), nevertheless made its way into the center of string theory, which now stands as the leading theory of the universe and our best hope yet of unifying all the particles and forces observed--and yet to be observed--in nature.Of course, none of this could have been foretold more than a half century ago when a man named Eugenio Calabi--the first half of the Calabi-Yau duo--proposed that there could be multidimensional spaces with properties so special that many mathematicians, including one of this book's authors, considered them "too good to be true." Calabi had not been thinking about physics at the time, in the early 1950s, when he advanced the famous conjecture named after him. Following the proof of the Calabi conjecture, we have learned many new and wonderful things in both physics and mathematics--all of which suggest that Calabi-Yau spaces are not only too good to be true, as the skeptics used to say, but that they may be even better. "Philippine Daily Inquirer" "A journey into the mind of a brilliant mathematician, "The Shape of Inner Space" will delight readers who are not afraid to use their minds." REVIEWS "Publishers Weekly ""With the help of "Astronomy" magazine contributing editor Nadis, Yau relates the saga of [ his] groundbreaking work which provided the foundations of string theory. Yau confidently draws readers into a realm of abstract concepts, from multiple dimensions to the exotic spaces called 'manifolds, ' or Calabi-Yau spaces, whose curvature gives space its shape. From here it's a hop, skip, and a jump to the geometry of space around the Big Bang, black holes, and the end of the universe." "New Scientist" "It is a testimony to [ Yau's] careful prose (and no doubt to the skills of co-author Steve Nadis) that this book so compellingly captures the essence of what pushes string theorists forward in the face of formidable obstacles. It gives us a rare glimpse into a world as alien as the moons of Jupiter, and just as fascinating.... Yau and Nadis have produced a strangely mesmerizing account of geometry's role in the universe." "Nature" "Physicists in "Plus Magazine" "This book tells the fascinating story of strange geometric objects that have achieved some fame outside of [ mathematics] called Calabi-Yau manifolds... The collaboration between a mathematician and a science writer has worked wonders in this book. It's crowded with beautiful metaphors that clarify complex ideas and provide a peek into higher-dimensional worlds... One thing that comes through on every page of this book is the beauty of the [ mathematics] and its power to shed light on the secrets of our Universe. If this is the kind of thing that fascinates you, then this is a great book to while away those dark winter evenings." PhysicsWorld.com "It is fascinating to see the story of string theory told from a mathematician's point of view rather than that of a physicist... By bravely attempting to explain areas of mathematics that no one has ever tried to relate to the public before, "The Shape of Inner Space" takes a huge step forward... It will undoubtedly

Muu info

Commended for IndieFab awards (Philosophy) 2010.
"Space/Time" (Poem) vii
Preface ix
Prelude: The Shapes of Things to Come xvii
1 A Universe in the Margins
1(16)
2 Geometry in the Natural Order
17(22)
3 A New Kind of Hammer
39(38)
4 Too Good to Be True
77(26)
5 Proving Calabi
103(18)
6 The DNA of String Theory
121(30)
7 Through the Looking Glass
151(32)
8 Kinks in Spacetime
183(16)
9 Back to the Real World
199(28)
10 Beyond Calabi-Yau
227(26)
11 The Universe Unravels
253(16)
12 The Search for Extra Dimensions
269(20)
13 Truth, Beauty, and Mathematics
289(18)
14 The End of Geometry?
307(14)
Epilogue Another Day, Another Donut 321(4)
Postlude Entering the Sanctum 325(4)
"A Flash in the Middle of a Long Night" (Poem) 329(2)
Notes 331(14)
Glossary 345(14)
Index 359
Shing-Tung Yau has won many awards, including the Fields Medal. He is a professor of mathematics at Harvard University and lives in Cambridge, Massachusetts. Steve Nadis is a Contributing Editor to Astronomy Magazine. He has published articles in Nature, Science, Scientific American, New Scientist, Sky&Telescope, The Atlantic Monthly, and other journals. He has written or contributed to more than two dozen books. A former staff researcher for the Union of Concerned Scientists, Nadis has also been a research fellow at MIT and a consultant to the World Resources Institute, the Woods Hole Oceanographic Institution, and WGBH/NOVA. He lives in Cambridge, Massachusetts.

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