Major advances in the quantum theory of macroscopic systems, in combination with stunning experimental achievements, have brightened the field and brought it to the attention of the general community in natural sciences. Today, working knowledge of dissipative quantum mechanics is an essential tool for many physicists. This book - originally published in 1990 and republished in 1999 as an enlarged second edition - delves much deeper than ever before into the fundamental concepts, methods, and applications of quantum dissipative systems, including the most recent developments. In this third ed
Lecture Notes in Mathematics 1881Understanding dissipative dynamics of open quantum systems remains ...
We discuss how various parts of a quantum many-body system exchange energies at thermal equilibrium....
Quantum mechanics touches all areas of physics, chemistry, life sciences, and engineering. It has em...
Lecture Notes in Mathematics 1882Understanding dissipative dynamics of open quantum systems remains ...
This book deals with the statistical mechanics and dynamics of open quantum systems moving irreversi...
This book explores some of the connections between dissipative and quantum effects from a theoretica...
Understanding dissipative dynamics of open quantum systems remains a challenge in mathematical physi...
Dissipation is a ubiquitous phenomenon in real physical systems. Its nature is made clear by conside...
In recent years there has been increasing interest in the consistent de-scription of the dynamics of...
Lecture Notes in Mathematics 1880Understanding dissipative dynamics of open quantum systems remains ...
The paper shows the results of theoretical research concerning the modeling and characterization of ...
Reviewing macroscopic quantum phenomena and quantum dissipation, from the phenomenology of magnetism...
Quantum mechanics is traditionally associated with microscopic systems; however, quantum concepts ha...
Quantum dissipation involves both energy relaxation and decoherence, leading toward quantum thermal ...
Three existing interpretations of quantum mechanics, given by Heisenberg, Bohm and Madelung, are exa...
Lecture Notes in Mathematics 1881Understanding dissipative dynamics of open quantum systems remains ...
We discuss how various parts of a quantum many-body system exchange energies at thermal equilibrium....
Quantum mechanics touches all areas of physics, chemistry, life sciences, and engineering. It has em...
Lecture Notes in Mathematics 1882Understanding dissipative dynamics of open quantum systems remains ...
This book deals with the statistical mechanics and dynamics of open quantum systems moving irreversi...
This book explores some of the connections between dissipative and quantum effects from a theoretica...
Understanding dissipative dynamics of open quantum systems remains a challenge in mathematical physi...
Dissipation is a ubiquitous phenomenon in real physical systems. Its nature is made clear by conside...
In recent years there has been increasing interest in the consistent de-scription of the dynamics of...
Lecture Notes in Mathematics 1880Understanding dissipative dynamics of open quantum systems remains ...
The paper shows the results of theoretical research concerning the modeling and characterization of ...
Reviewing macroscopic quantum phenomena and quantum dissipation, from the phenomenology of magnetism...
Quantum mechanics is traditionally associated with microscopic systems; however, quantum concepts ha...
Quantum dissipation involves both energy relaxation and decoherence, leading toward quantum thermal ...
Three existing interpretations of quantum mechanics, given by Heisenberg, Bohm and Madelung, are exa...
Lecture Notes in Mathematics 1881Understanding dissipative dynamics of open quantum systems remains ...
We discuss how various parts of a quantum many-body system exchange energies at thermal equilibrium....
Quantum mechanics touches all areas of physics, chemistry, life sciences, and engineering. It has em...