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Magnetic resonance force microscopy and a single-spin measurement [[electronic resource] /] / Gennady P. Berman ... [et al.]
Magnetic resonance force microscopy and a single-spin measurement [[electronic resource] /] / Gennady P. Berman ... [et al.]
Pubbl/distr/stampa Singapore ; ; Hackensack, N.J., : World Scientific, c2006
Descrizione fisica 1 online resource (236 p.)
Disciplina 538.36
Altri autori (Persone) BermanGennady P. <1946->
Soggetto topico Electron paramagnetic resonance
Magnetic resonance force microscopy
Magnetic resonance
Nuclear spin
Soggetto genere / forma Electronic books.
ISBN 1-281-91928-4
9786611919283
1-61583-237-8
981-277-409-2
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Contents; 1 Introduction; 2 Spin Dynamics - Quasiclassical Description; 3 Spin Dynamics - Quantum Description; 4 Mechanical Vibrations of the Cantilever; 5 Single-Spin Detection in Magnetic Force Microscopy (MFM); 5.1 Static displacement of the cantilever tip (CT)
5.2 Decoherence time 6 Transient Process in MFM - The Exact Solution of the Master Equation; 6.1 Hamiltonian and master equation for the spin-CT system; 6.2 Solution for spin diagonal matrix elements ; 6.3 Solution for spin off-diagonal matrix elements
7 Periodic Spin Reversals in Magnetic Resonance Force Microscopy (MRFM) Driven by 7r-Pulses 8 Oscillating Adiabatic Spin Reversals Driven by the Frequency Modulated rf Field; 8.1 Schrödinger dynamics of the CT-spin system; 8.2 Decoherence and thermal diffusion for the CT
9 Oscillating Cantilever-Driven Adiabatic Reversals (OSCAR) Technique in MRFM 9.1 CT-spin dynamics: discussion and estimates; 9.2 Experimental detection of a single spin; 10 CT-Spin Dynamics in the OSCAR Technique; 10.1 Quasiclassical theory: ple geometry
10.2 Quantum theory of the OSCAR MRFM 10.3 OSCAR frequency shift for a realistic setup; 11 Magnetic Noise and Spin Relaxation in OSCAR MRFM; 11.1 OSCAR relaxation in a spin ensemble; 11.2 Reduction of magnetic noise; 11.3 Simple model for quantum jumps
11.4 Reduction of the frequency shift due to the CT-spin entanglement
Record Nr. UNINA-9910450693003321
Singapore ; ; Hackensack, N.J., : World Scientific, c2006
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Magnetic resonance force microscopy and a single-spin measurement [[electronic resource] /] / Gennady P. Berman ... [et al.]
Magnetic resonance force microscopy and a single-spin measurement [[electronic resource] /] / Gennady P. Berman ... [et al.]
Pubbl/distr/stampa Singapore ; ; Hackensack, N.J., : World Scientific, c2006
Descrizione fisica 1 online resource (236 p.)
Disciplina 538.36
Altri autori (Persone) BermanGennady P. <1946->
Soggetto topico Electron paramagnetic resonance
Magnetic resonance force microscopy
Magnetic resonance
Nuclear spin
ISBN 1-281-91928-4
9786611919283
1-61583-237-8
981-277-409-2
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Contents; 1 Introduction; 2 Spin Dynamics - Quasiclassical Description; 3 Spin Dynamics - Quantum Description; 4 Mechanical Vibrations of the Cantilever; 5 Single-Spin Detection in Magnetic Force Microscopy (MFM); 5.1 Static displacement of the cantilever tip (CT)
5.2 Decoherence time 6 Transient Process in MFM - The Exact Solution of the Master Equation; 6.1 Hamiltonian and master equation for the spin-CT system; 6.2 Solution for spin diagonal matrix elements ; 6.3 Solution for spin off-diagonal matrix elements
7 Periodic Spin Reversals in Magnetic Resonance Force Microscopy (MRFM) Driven by 7r-Pulses 8 Oscillating Adiabatic Spin Reversals Driven by the Frequency Modulated rf Field; 8.1 Schrödinger dynamics of the CT-spin system; 8.2 Decoherence and thermal diffusion for the CT
9 Oscillating Cantilever-Driven Adiabatic Reversals (OSCAR) Technique in MRFM 9.1 CT-spin dynamics: discussion and estimates; 9.2 Experimental detection of a single spin; 10 CT-Spin Dynamics in the OSCAR Technique; 10.1 Quasiclassical theory: ple geometry
10.2 Quantum theory of the OSCAR MRFM 10.3 OSCAR frequency shift for a realistic setup; 11 Magnetic Noise and Spin Relaxation in OSCAR MRFM; 11.1 OSCAR relaxation in a spin ensemble; 11.2 Reduction of magnetic noise; 11.3 Simple model for quantum jumps
11.4 Reduction of the frequency shift due to the CT-spin entanglement
Record Nr. UNINA-9910777056903321
Singapore ; ; Hackensack, N.J., : World Scientific, c2006
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Magnetic resonance force microscopy and a single-spin measurement / / Gennady P. Berman ... [et al.]
Magnetic resonance force microscopy and a single-spin measurement / / Gennady P. Berman ... [et al.]
Edizione [1st ed.]
Pubbl/distr/stampa Singapore ; ; Hackensack, N.J., : World Scientific, c2006
Descrizione fisica 1 online resource (236 p.)
Disciplina 538.36
Altri autori (Persone) BermanGennady P. <1946->
Soggetto topico Electron paramagnetic resonance
Magnetic resonance force microscopy
Magnetic resonance
Nuclear spin
ISBN 1-281-91928-4
9786611919283
1-61583-237-8
981-277-409-2
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Contents; 1 Introduction; 2 Spin Dynamics - Quasiclassical Description; 3 Spin Dynamics - Quantum Description; 4 Mechanical Vibrations of the Cantilever; 5 Single-Spin Detection in Magnetic Force Microscopy (MFM); 5.1 Static displacement of the cantilever tip (CT)
5.2 Decoherence time 6 Transient Process in MFM - The Exact Solution of the Master Equation; 6.1 Hamiltonian and master equation for the spin-CT system; 6.2 Solution for spin diagonal matrix elements ; 6.3 Solution for spin off-diagonal matrix elements
7 Periodic Spin Reversals in Magnetic Resonance Force Microscopy (MRFM) Driven by 7r-Pulses 8 Oscillating Adiabatic Spin Reversals Driven by the Frequency Modulated rf Field; 8.1 Schrödinger dynamics of the CT-spin system; 8.2 Decoherence and thermal diffusion for the CT
9 Oscillating Cantilever-Driven Adiabatic Reversals (OSCAR) Technique in MRFM 9.1 CT-spin dynamics: discussion and estimates; 9.2 Experimental detection of a single spin; 10 CT-Spin Dynamics in the OSCAR Technique; 10.1 Quasiclassical theory: ple geometry
10.2 Quantum theory of the OSCAR MRFM 10.3 OSCAR frequency shift for a realistic setup; 11 Magnetic Noise and Spin Relaxation in OSCAR MRFM; 11.1 OSCAR relaxation in a spin ensemble; 11.2 Reduction of magnetic noise; 11.3 Simple model for quantum jumps
11.4 Reduction of the frequency shift due to the CT-spin entanglement
Record Nr. UNINA-9910807202703321
Singapore ; ; Hackensack, N.J., : World Scientific, c2006
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui