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Professor Sir Roger Penrose's work, spanning fifty years of science, with over five thousand pages and more than three hundred papers, has been collected together for the first time and arranged chronologically over six volumes, each with an introduction from the author. Where relevant, individual papers also come with specific introductions or notes.Many important realizations concerning twistor theory occurred during the short period of this third volume, providing a new perspective on the way that mathematical features of the complex geometry of twistor theory relate to actual physical fields. Following on from the nonlinear graviton construction, a twistor construction was found for (anti-)self-dual electromagnetism allowing the general (anti-)self-dual Yang-Mills field to be obtained. It became clear that some features of twistor contour integrals could be understood in terms of holomorphic sheaf cohomology. During this period, the Oxford research group founded the informal publication, Twistor Newsletter. This volume also contains the influential Weyl curvature hypothesis and new forms of Penrose tiles.
This volume investigates the evolution of twistor theory and its application to physical fields during a pivotal five-year window of theoretical research. Roger Penrose, a renowned mathematical physicist, curates his own scholarly output from 1976 to 1980 to demonstrate the progression of his work. The text provides a chronological framework for understanding how complex geometry informs the structure of physical fields, supported by the author's retrospective introductions and technical notes.
What You Will Find
Experts and researchers in the field of mathematical physics regard this collection as a primary source for understanding the development of twistor theory. Readers frequently note the high level of technical density, making this volume most suitable for those with an advanced background in mathematics and theoretical physics.
Page Count:
719
Publication Date:
2010-02-01
Publisher:
Oxford University Press
ISBN-10:
0199219389
ISBN-13:
9780199219384
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