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During A:.lgust 1987. a group of 76 physicists from 51 laboratories in 22 countries met in Erice for the 25th Course of the International School of Subnuclear Physics. The countries represented were: Austria. Bulgaria. Canada. Chile. China. Colombia. Czechoslovakia. France. Federal Republic of Germany. Greece. Hungary. India. Italy. Lebanon. The Netherlands. Poland. Portugal. Spain. Sweden. Switzerland. United Kingdom. and the United States of America. The School was sponsored by the European Physical Society (EPS). the Italian Ministry of Public Education (MPI). the Italian Ministry of Scientific and Technological Research (MRSI). the Sicilian Regional Government (ERS). and the Weizmann Institute of Science. This is the 25th anniversary of the School and. for the second time. the programme has been mainly devoted to the Superworld. Needless to say that the Superworld appears to be. at present. very far from the experimental axis. Nevertheless. the Superworld is a fascinating field of modern physics: we ought to know what boils in the heads of our theoretical colleagues. keeping in mind that the source of basic truth is. and will remain. experimental physics. Relevant news in experimental physics was scarce in the past year and the most interesting results have been reported. The future has also been presented with LEP. Gran Sasso. HERA: projects to become operative by 1000; and ELOISATRON as the driving force for Europe to keep a central role in Subnuclear Physics.
This invaluable volume is dedicated to the memory of Yuri Golfand, one of the discoverers of supersymmetry. Together with his student, he constructed in 1970 the superextension of the Poincaré algebra and obtained the first four-dimensional supersymmetric field theory, a version of supersymmetric QED. Golfand died in 1994 in Israel.Did the pioneers of supersymmetry — Neveu, Schwarz, Ramond, Golfand, Volkov, Wess, Zumino and others — foresee in the early 1970's that they would be opening to us the gates of the superworld? The superworld will become one of the most important components of our understanding of Nature — a component that will stay with us forever.This book is a compilation of the original papers and review articles, devoted to various aspects of supersymmetry, written by the outstanding researchers in the field, theorists whose work shaped the present day theory and continues to make a profound impact on the frontier directions of the current development. A wide range of topics is covered — from subtle results in the superstring theory to supersymmetry-based phenomenology. Most of the articles have been prepared specifically for this volume.The first part of the book consists of the Editor's essay presenting the basic stages of Golfand's life and work, the memoirs of his widow, Mrs N Koretz-Golfand and of his student, Dr E Likhtman. Also included is the article of Prof. M Marinov “Revealing the Path to the Superworld”, outlining the main ideas that paved the way to the discovery of supersymmetry. The historical part of the book concludes with the English translation of the Golfand-Likhtman paper on supersymmetry published in 1972 in the Tamm Memorial Volume.
During August 1988. a group of 67 physicists from 45 laboratories in 17 countries met in Erice for the 26th Course of the International School of Subnuclear Physics. The countries represented were: Australia. Austria. Canada. China. Czechoslovakia. Denmark. France. Federal Republic of Germany. India. Italy. Poland. Portugal. Spain. Sweden. Switzerland. United Kingdom. and the United States of America. The School was sponsored by the European Physical Society (EPS). the Italian Ministry of Public Education (MPI). the Sicilian Regional Government (ERS). and the Weizmann Institute of Science. The interest in the Superworld is still very high. This is why. for the third year. the Erice School has been devoted. to a great extent. to review the many developments in Superstring. Supermembranes with their problems of quantization and compactification. All these theoretical speculations are very far from the experimental frontier. In order to keep our feet on the ground. a series of lectures was included to cover the status of CP violation. of the Heavy Leptons. together with the projects for new physics at Gran Sasso and Fermi Lab. For completeness. Julian Schwinger reviewed the great problem of Anomalies in Quantum Field Theory and Shelly Glashow gave a closing lecture on the end of Superworld. If nothing new happens. next year there will be no Superworld in Erice.
These proceedings cover the most recent advances in these topics keeping in mind their impact on observable phenomena. In addition they review the status and prospects of all known gauge forces, including the experimental results on their validity.
String theory is one of the most exciting and challenging areas of modern theoretical physics. This book guides the reader from the basics of string theory to recent developments. It introduces the basics of perturbative string theory, world-sheet supersymmetry, space-time supersymmetry, conformal field theory and the heterotic string, before describing modern developments, including D-branes, string dualities and M-theory. It then covers string geometry and flux compactifications, applications to cosmology and particle physics, black holes in string theory and M-theory, and the microscopic origin of black-hole entropy. It concludes with Matrix theory, the AdS/CFT duality and its generalizations. This book is ideal for graduate students and researchers in modern string theory, and will make an excellent textbook for a one-year course on string theory. It contains over 120 exercises with solutions, and over 200 homework problems with solutions available on a password protected website for lecturers at www.cambridge.org/9780521860697.
Assessing what has worked, what hasn't, and why, this triennial report is an invaluable guide for understanding how to capture the benefits of information and communication technology around the world. This year's report focuses on mobile applications.
Professor Kuang-Chao Chou (also known as Guang-Zhao Zhou) is the former President of Chinese Academy of Sciences. He has been elected as the Academician of Chinese Academy of Sciences, Foreign Associate of the US National Academy of Sciences, Fellow of the Third World Academy of Science, Foreign Member of Soviet (Russian) Academy of Sciences, Czechoslovak Academy of Sciences, Bulgarian Academy of Sciences, Romania Academy of Sciences, Mongolian Academy of Sciences, the European Academy of Arts, Sciences and Humanities, Membre fondateur Academie Francophone d'Ingenieurs.He also served as the director of Institute of Theoretical Physics at the Chinese Academy of Sciences, the Dean of the Science School of Tsinghua University, the Chairman of the China Association for Sciences and Technology, the President of Pacific Science Association, Vice President of Third World Academy of Sciences.?Zhou is a first rate physicist: broad, powerful and very quick in grasping new ideas. His style of doing physics reminds me of that of Landau, Salam, and of Teller.?C N Yang?His published papers have won uniformly high praises by the international scientific community and his articles are always written with depth and elegance.?T D LeeThis volume presents a collection of selected papers written by Prof Chou. The papers are organized into four parts according to the subject of research areas and the language of publishing journals. Part I (in English) and Part III (in Chinese) are papers on field theories, particle physics and nuclear physics, Part II (in English) and Part IV (in Chinese) are papers on statistical physics and condensed matter physics. From the published papers, it illustrates and is clearly evident how Prof Chou was constantly at the frontiers of theoretical physics in various periods and carried out creative research works experimenting with initial ideas and motivations, as well as how he has driven and worked in different key research directions of theoretical physics, all for which he has made significant contributions to various interesting research areas and interdisciplinary fields.