International Workshop on Superconducting Nano-Electronics Devices (eBook, PDF)
SNED Proceedings, Naples, Italy, May 28-June 1, 2001
Redaktion: Pekola, Jukka; Silvestrini, Paolo; Ruggiero, Berardo
73,95 €
73,95 €
inkl. MwSt.
Sofort per Download lieferbar
37 °P sammeln
73,95 €
Als Download kaufen
73,95 €
inkl. MwSt.
Sofort per Download lieferbar
37 °P sammeln
Jetzt verschenken
Alle Infos zum eBook verschenken
73,95 €
inkl. MwSt.
Sofort per Download lieferbar
Alle Infos zum eBook verschenken
37 °P sammeln
International Workshop on Superconducting Nano-Electronics Devices (eBook, PDF)
SNED Proceedings, Naples, Italy, May 28-June 1, 2001
Redaktion: Pekola, Jukka; Silvestrini, Paolo; Ruggiero, Berardo
- Format: PDF
- Merkliste
- Auf die Merkliste
- Bewerten Bewerten
- Teilen
- Produkt teilen
- Produkterinnerung
- Produkterinnerung
Bitte loggen Sie sich zunächst in Ihr Kundenkonto ein oder registrieren Sie sich bei
bücher.de, um das eBook-Abo tolino select nutzen zu können.
Hier können Sie sich einloggen
Hier können Sie sich einloggen
Sie sind bereits eingeloggt. Klicken Sie auf 2. tolino select Abo, um fortzufahren.
Bitte loggen Sie sich zunächst in Ihr Kundenkonto ein oder registrieren Sie sich bei bücher.de, um das eBook-Abo tolino select nutzen zu können.
SNED Proceedings (Naples, Italy, May 28-June 1, 2001)
- Geräte: PC
- ohne Kopierschutz
- eBook Hilfe
- Größe: 33.03MB
Andere Kunden interessierten sich auch für
- Electron Correlation in New Materials and Nanosystems (eBook, PDF)73,95 €
- Shigeji FujitaQuantum Theory of Conducting Matter (eBook, PDF)73,95 €
- Frontiers of Nano-Optoelectronic Systems (eBook, PDF)73,95 €
- Magneto-Optical Imaging (eBook, PDF)161,95 €
- Towards the First Silicon Laser (eBook, PDF)73,95 €
- Handbook of Advanced Magnetic Materials (eBook, PDF)395,95 €
- Karlheinz SeegerSemiconductor Physics (eBook, PDF)73,95 €
-
-
-
SNED Proceedings (Naples, Italy, May 28-June 1, 2001)
Dieser Download kann aus rechtlichen Gründen nur mit Rechnungsadresse in A, B, BG, CY, CZ, D, DK, EW, E, FIN, F, GR, HR, H, IRL, I, LT, L, LR, M, NL, PL, P, R, S, SLO, SK ausgeliefert werden.
Produktdetails
- Produktdetails
- Verlag: Springer US
- Seitenzahl: 241
- Erscheinungstermin: 6. Dezember 2012
- Englisch
- ISBN-13: 9781461507376
- Artikelnr.: 44044566
- Verlag: Springer US
- Seitenzahl: 241
- Erscheinungstermin: 6. Dezember 2012
- Englisch
- ISBN-13: 9781461507376
- Artikelnr.: 44044566
- Herstellerkennzeichnung Die Herstellerinformationen sind derzeit nicht verfügbar.
Quantum Nondemolition Measurements of a Qubit.- Bayesian Quantum Measurement of a Single-Cooper-Pair Qubit.- 1/f Noise in Josephson Qubits.- Switching Currents and Quasi-Particle Poisoning in the Superconducting Single Electron Transistor.- Josephson Systems for Quantum Coherence Experiments.- Solid State Analogue of Double Slit Interferometer.- Noise and Microwave Properties of SET-Transistors.- Use of Small Tunnel Junctions Operating at T = 0.3 K.- A Hysteric Single Cooper Pair Transistor for Single Shot Reading of a Charge-Qubit.- Single Cooper Pair Electrometer Based on a Radio-Frequency-SQUID Scheme.- Possibility of Single-Electron Devices and Superconducting Coherence.- Frequency-Locked Current of Cooper Pairs in Superconducting Single Electron Transistor with Ohmic Resistor.- Setup for Experiments on the Supercurrent-Phase Relation in Bloch Transistors-Status and Possible Applications.- Single-Electron Transistors in the Regime of High Conductance.- Superconducting Transistor-Edge Sensors for Time & Energy Resolved Single-Photon Counters and for Dark Matter Searches.- Optimization of the Hot-Electron Bolometer and a Cascade Quasiparticle.- Noise in Refrigerating Tunnel Junctions and in Microbolometers.- Nonequilibrium Quasiparticles and Electron Cooling by Normal Metal-Superconductor Tunnel Junctions.- Mesoscopic Josephson Junctions Coupled to Weak Coherent Fields: An Example of Reciprocal Detection.- Dynamics of Superconducting Interferometers Containing Pi-Junctions.- Superconducting Current-Phase Dependence on High-Tc Symmetrical Bicrystal Junctions.- Superconducting Quantum Detector for Astronomy and X-Ray Spectroscopy.- Lifetime of Even-Parity States of a Bloch Transistor.- Magnetic Field Dependence of Retrapping Currents in DC-SQUIDs.- Josephson versus Kondo Coupling at a Quantum Dot with Superconducting Contacts.
Quantum Nondemolition Measurements of a Qubit.- Bayesian Quantum Measurement of a Single-Cooper-Pair Qubit.- 1/f Noise in Josephson Qubits.- Switching Currents and Quasi-Particle Poisoning in the Superconducting Single Electron Transistor.- Josephson Systems for Quantum Coherence Experiments.- Solid State Analogue of Double Slit Interferometer.- Noise and Microwave Properties of SET-Transistors.- Use of Small Tunnel Junctions Operating at T = 0.3 K.- A Hysteric Single Cooper Pair Transistor for Single Shot Reading of a Charge-Qubit.- Single Cooper Pair Electrometer Based on a Radio-Frequency-SQUID Scheme.- Possibility of Single-Electron Devices and Superconducting Coherence.- Frequency-Locked Current of Cooper Pairs in Superconducting Single Electron Transistor with Ohmic Resistor.- Setup for Experiments on the Supercurrent-Phase Relation in Bloch Transistors-Status and Possible Applications.- Single-Electron Transistors in the Regime of High Conductance.- Superconducting Transistor-Edge Sensors for Time & Energy Resolved Single-Photon Counters and for Dark Matter Searches.- Optimization of the Hot-Electron Bolometer and a Cascade Quasiparticle.- Noise in Refrigerating Tunnel Junctions and in Microbolometers.- Nonequilibrium Quasiparticles and Electron Cooling by Normal Metal-Superconductor Tunnel Junctions.- Mesoscopic Josephson Junctions Coupled to Weak Coherent Fields: An Example of Reciprocal Detection.- Dynamics of Superconducting Interferometers Containing Pi-Junctions.- Superconducting Current-Phase Dependence on High-Tc Symmetrical Bicrystal Junctions.- Superconducting Quantum Detector for Astronomy and X-Ray Spectroscopy.- Lifetime of Even-Parity States of a Bloch Transistor.- Magnetic Field Dependence of Retrapping Currents in DC-SQUIDs.- Josephson versus Kondo Coupling at a Quantum Dot with Superconducting Contacts.