Verkauf durch Sack Fachmedien

Bergou / Hillery / Saffman

Quantum Information Processing

Theory and Implementation

Medium: Buch
ISBN: 978-3-030-75435-8
Verlag: Springer
Erscheinungstermin: 15.09.2021
Lieferfrist: bis zu 10 Tage

This new edition of a well-received textbook provides a concise introduction to both the theoretical and experimental aspects of quantum information at the graduate level. While the previous edition focused on theory, the book now incorporates discussions of experimental platforms. Several chapters on experimental implementations of quantum information protocols have been added: implementations using neutral atoms, trapped ions, optics, and solidstate systems are each presented in its own chapter. Previous chapters on entanglement, quantum measurements, quantum dynamics, quantum cryptography, and quantum algorithms have been thoroughly updated, and new additions include chapters on the stabilizer formalism and the Gottesman-Knill theorem as well as aspects of classical and quantum information theory.

To facilitate learning, each chapter starts with a clear motivation to the topic and closes with exercises and a recommended reading list.

Quantum Information Processing: Theory and Implementation  will be essential to graduate students studying quantum information as well as and researchers in other areas of physics who wish to gain knowledge in the field.



Produkteigenschaften


  • Artikelnummer: 9783030754358
  • Medium: Buch
  • ISBN: 978-3-030-75435-8
  • Verlag: Springer
  • Erscheinungstermin: 15.09.2021
  • Sprache(n): Englisch
  • Auflage: 2. Auflage 2021
  • Serie: Graduate Texts in Physics
  • Produktform: Gebunden, HC runder Rücken kaschiert
  • Gewicht: 653 g
  • Seiten: 305
  • Format (B x H x T): 160 x 241 x 24 mm
  • Ausgabetyp: Kein, Unbekannt
  • Vorauflage: 978-1-4614-7091-5
Autoren/Hrsg.

Autoren

Preface.- Introduction.- The Density Matrix.- Entanglement.- Generalized Quantum Dynamics.- Quantum Measurement Theory.- Quantum Cryptography.- Quantum Algorithms.- Quantum Machines.- Decoherence and Quantum Error Correction.- The Stabilizer Formalism.- Information Theory.- Physical Requirements for Quantum Computing.- Qubits Coupled to the Environment.- Atomic Qubits.- Photonic Qubits.- Solid State Qubits.- Comparison and Outlook.- Index.