Analytical description of spin-Rabi oscillation controlled electronic transitions rates between weakly coupled pairs of paramagnetic states with S=1/2
arXiv:1207.1754 · doi:10.1103/PhysRevB.87.155208
Abstract
We report on an analytical description of spin-dependent electronic transition rates which are controlled by a radiation induced spin-Rabi oscillation of weakly spin-exchange and spin-dipolar coupled paramagnetic states (S=1/2). The oscillation components (the Fourier content) of the net transition rates within spin-pair ensembles are derived for randomly distributed spin resonances with account of a possible correlation between the two distributions that correspond to the two individual pair partners. The results presented here show that when electrically or optically detected Rabi spectroscopy is conducted under an increasing driving field B_ 1, the Rabi spectrum evolves from a single resonance peak at s=Ω_R, where Ω_R=γB_1 is the Rabi frequency (γis the gyromagnetic ratio), to three peaks at s= Ω_R, s=2Ω_R, and at low s<< Ω_R. The crossover between the two regimes takes place when Ω_R exceeds the expectation value δ_0 of the difference of the Zeeman energies within the pairs, which corresponds to the broadening of the magnetic resonance lines in the presence of disorder caused by hyperfine field or distributions of Lande g-factors. We capture this crossover by analytically calculating the shapes of all three peaks at arbitrary relation between Ω_R and δ_0. When the peaks are well-developed their widths are Δs ~ δ_0^2/Ω_R.
10 page, 5 figures
References in corpus (5)
- Electrical detection of 31P spin quantum states
- Universal phase shift and non-exponential decay of driven single-spin oscillations
- Room Temperature Electrical Detection of Spin Coherence in C60
- Electrical detection of spin echoes for phosphorus donors in silicon
- Transport and recombination through weakly coupled localized spin pairs in semiconductors during coherent spin excitation
Cited by in corpus (2)
- Numerical study of spin-dependent transition rates within pairs of dipolar and strongly exchange coupled spins with (s=1/2) during magnetic resonant excitation
- Analytical study of spin-dependent transition rates within pairs of dipolar and strongly exchange coupled spins with (S = 1/2) during magnetic resonant excitation