Riccardo Manenti (Senior Quantum Engineer, Senior Quantum Engineer,, Mario Motta (Research Staff Member, Research Staff Member, IBM Alma
Quantum Information Science
Riccardo Manenti (Senior Quantum Engineer, Senior Quantum Engineer,, Mario Motta (Research Staff Member, Research Staff Member, IBM Alma
Quantum Information Science
- Gebundenes Buch
- Merkliste
- Auf die Merkliste
- Bewerten Bewerten
- Teilen
- Produkt teilen
- Produkterinnerung
- Produkterinnerung
This book explains quantum information, the science at the basis of the new quantum revolution of this century. Aimed at students who are about to begin a master's program or their graduate studies, it teaches the reader to build and program a quantum computer and leverage its potential.
Andere Kunden interessierten sich auch für
J M P Carmelo / J M B Lopes dos Santos / V Rocha Vieira / P D Sacramento (eds.)Strongly Correlated Systems, Coherence and Entanglement210,99 €
Cor Claeys / Eddy Simoen (eds.)Germanium-Based Technologies143,99 €
Michael P. Allen (Emeritus Professor and Emeritus Visiting FellowComputer Simulation of Liquids97,99 €
Jim Baggott (Science writer)Quantum Reality30,99 €
Prof Peter Milonni (Laboratory Fellow and Labor Research ProfessorAn Introduction to Quantum Optics and Quantum Fluctuations52,99 €
Jim Baggott (Freelance science writer)The Quantum Story23,99 €
Joseph Buchbinder (Tomsk State P Department of Theoretical PhysicsIntroduction to Quantum Field Theory with Applications to Quantum Gravity56,99 €-
-
-
This book explains quantum information, the science at the basis of the new quantum revolution of this century. Aimed at students who are about to begin a master's program or their graduate studies, it teaches the reader to build and program a quantum computer and leverage its potential.
Produktdetails
- Produktdetails
- Verlag: Oxford University Press
- Seitenzahl: 768
- Erscheinungstermin: 25. November 2023
- Englisch
- Abmessung: 251mm x 174mm x 43mm
- Gewicht: 1630g
- ISBN-13: 9780198787488
- ISBN-10: 0198787480
- Artikelnr.: 67475414
- Herstellerkennzeichnung
- Libri GmbH
- Europaallee 1
- 36244 Bad Hersfeld
- gpsr@libri.de
- Verlag: Oxford University Press
- Seitenzahl: 768
- Erscheinungstermin: 25. November 2023
- Englisch
- Abmessung: 251mm x 174mm x 43mm
- Gewicht: 1630g
- ISBN-13: 9780198787488
- ISBN-10: 0198787480
- Artikelnr.: 67475414
- Herstellerkennzeichnung
- Libri GmbH
- Europaallee 1
- 36244 Bad Hersfeld
- gpsr@libri.de
Riccardo Manenti earned his DPhil at the University of Oxford in 2017 with a thesis investigating the coupling between a superconducting qubit and a mechanical oscillator based on surface acoustic waves. His research contributed to the formation of a new research field, now called circuit quantum acousto-dynamics. He is currently a Senior Quantum Engineer at Rigetti Computing, a quantum computing company based in Berkeley, California. Mario Motta earned his Ph.D. at the University of Milano in 2015 with a thesis on quantum Monte Carlo simulation of fermionic systems. After postdoctoral positions at the College of William and Mary and the California Institute of Technology, he became a Research Staff Member at IBM Almaden Research Center in 2019.
PART I - FOUNDATIONS
1: Mathematical tools
2: Computational models
3: Linear algebra
4: Quantum mechanics
5: Quantum circuits
PART II - MODERN QUANTUM MECHANICS
6: Density operators
7: Quantum maps
8: Decoherence
PART III - APPLICATIONS
9: Entanglement
10: Early quantum algorithms
11: Quantum simulation of Hamiltonian dynamics
12: Quantum simulation of Hamiltonian eigenstates
PART IV - QUANTUM ENGINEERING OF SUPERCONDUCTING DEVICES
13: Microwave resonators for superconducting devices
14: Superconducting qubits
Appendix A: The rotating wave approximation
Appendix B: Advanced quantum mechanics
Appendix C: The quantum Fourier transform
Appendix D: The molecular Hamiltonian in second quantization
1: Mathematical tools
2: Computational models
3: Linear algebra
4: Quantum mechanics
5: Quantum circuits
PART II - MODERN QUANTUM MECHANICS
6: Density operators
7: Quantum maps
8: Decoherence
PART III - APPLICATIONS
9: Entanglement
10: Early quantum algorithms
11: Quantum simulation of Hamiltonian dynamics
12: Quantum simulation of Hamiltonian eigenstates
PART IV - QUANTUM ENGINEERING OF SUPERCONDUCTING DEVICES
13: Microwave resonators for superconducting devices
14: Superconducting qubits
Appendix A: The rotating wave approximation
Appendix B: Advanced quantum mechanics
Appendix C: The quantum Fourier transform
Appendix D: The molecular Hamiltonian in second quantization
PART I - FOUNDATIONS
1: Mathematical tools
2: Computational models
3: Linear algebra
4: Quantum mechanics
5: Quantum circuits
PART II - MODERN QUANTUM MECHANICS
6: Density operators
7: Quantum maps
8: Decoherence
PART III - APPLICATIONS
9: Entanglement
10: Early quantum algorithms
11: Quantum simulation of Hamiltonian dynamics
12: Quantum simulation of Hamiltonian eigenstates
PART IV - QUANTUM ENGINEERING OF SUPERCONDUCTING DEVICES
13: Microwave resonators for superconducting devices
14: Superconducting qubits
Appendix A: The rotating wave approximation
Appendix B: Advanced quantum mechanics
Appendix C: The quantum Fourier transform
Appendix D: The molecular Hamiltonian in second quantization
1: Mathematical tools
2: Computational models
3: Linear algebra
4: Quantum mechanics
5: Quantum circuits
PART II - MODERN QUANTUM MECHANICS
6: Density operators
7: Quantum maps
8: Decoherence
PART III - APPLICATIONS
9: Entanglement
10: Early quantum algorithms
11: Quantum simulation of Hamiltonian dynamics
12: Quantum simulation of Hamiltonian eigenstates
PART IV - QUANTUM ENGINEERING OF SUPERCONDUCTING DEVICES
13: Microwave resonators for superconducting devices
14: Superconducting qubits
Appendix A: The rotating wave approximation
Appendix B: Advanced quantum mechanics
Appendix C: The quantum Fourier transform
Appendix D: The molecular Hamiltonian in second quantization







