Department of Chemical Physics, Weizmann Institute of Science, Rehovot, 76100, Israel.
Phys Rev Lett. 2013 Aug 23;111(8):080404. doi: 10.1103/PhysRevLett.111.080404. Epub 2013 Aug 20.
During recent years, dynamical decoupling (DD) has gained relevance as a tool for manipulating and interrogating quantum systems. This is particularly relevant for spins involved in nuclear magnetic resonance (NMR), where DD sequences can be used to prolong quantum coherences, or to selectively couple or decouple the effects imposed by random environmental fluctuations. In this Letter, we show that these concepts can be exploited to selectively recouple diffusion processes in restricted spaces. The ensuing method provides a novel tool to measure restriction lengths in confined systems such as capillaries, pores or cells. The principles of this method for selectively recoupling diffusion-driven decoherence, its standing within the context of diffusion NMR, extensions to the characterization of other kinds of quantum fluctuations, and corroborating experiments, are presented.
近年来,动态去耦(DD)作为一种操纵和探测量子系统的工具引起了人们的关注。这对于涉及核磁共振(NMR)的自旋尤其重要,其中 DD 序列可用于延长量子相干性,或选择性地耦合或去耦随机环境波动所施加的影响。在这封信中,我们表明这些概念可以被利用来选择性地重新组合受限空间中的扩散过程。随后的方法提供了一种新的工具来测量受限系统(如毛细血管、孔隙或细胞)中的限制长度。本文介绍了这种用于选择性重新组合扩散驱动退相干的方法的原理、它在扩散 NMR 中的地位、对其他类型量子涨落的特征描述的扩展以及验证实验。