Anders Frithjof B, Bulla Ralf, Vojta Matthias
Fachbereich Physik, Universität Bremen, 28334 Bremen, Germany.
Phys Rev Lett. 2007 May 25;98(21):210402. doi: 10.1103/PhysRevLett.98.210402. Epub 2007 May 24.
Employing the nonperturbative numerical renormalization group method, we study the dynamics of the spin-boson model, which describes a two-level system coupled to a bosonic bath with a spectral density J(omega) proportional to omega(s). We show that, in contrast with the case of Ohmic damping, the delocalized phase of the sub-Ohmic model cannot be characterized by a single energy scale only, due to the presence of a nontrivial quantum phase transition. In the strongly sub-Ohmic regime, s<<1, weakly damped coherent oscillations on short time scales are possible even in the localized phase--this is of crucial relevance, e.g., for qubits subject to electromagnetic noise.
我们采用非微扰数值重整化群方法研究自旋 - 玻色子模型的动力学,该模型描述了一个与具有与ω^s成正比的谱密度J(ω)的玻色子浴耦合的两能级系统。我们表明,与欧姆阻尼的情况不同,由于存在非平凡的量子相变,亚欧姆模型的离域相不能仅由单一能量尺度来表征。在强亚欧姆区域,s << 1,即使在局域相中,短时间尺度上也可能存在弱阻尼的相干振荡——这具有至关重要的意义,例如对于受到电磁噪声影响的量子比特。