Publication:

Control and local measurement of the spin chemical potential in a magnetic insulator

Loading...
Thumbnail Image

Date

2017-07-13

Published Version

Journal Title

Journal ISSN

Volume Title

Publisher

American Association for the Advancement of Science (AAAS)
The Harvard community has made this article openly available. Please share how this access benefits you.

Research Projects

Organizational Units

Journal Issue

Citation

Du, Chunhui, Toeno Van Der Sar, Tony X Zhou, Pramey Upadhyaya, Francesco Casola, Huiliang Zhang, Mehmet C Onbasli, Caroline A Ross, Ronald L Walsworth, Yaroslav Tserkovnyak, and Amir Yacoby. "Control and Local Measurement of the Spin Chemical Potential in a Magnetic Insulator." Science (New York, N.Y.) 357, no. 6347 (2017): 195-198.

Abstract

The spin chemical potential characterizes the tendency of spins to diffuse. Probing this quantity could provide insight into materials such as magnetic insulators and spin liquids and aid optimization of spintronic devices. Here we introduce single-spin magnetometry as a generic platform for nonperturbative, nanoscale characterization of spin chemical potentials. We experimentally realize this platform using diamond nitrogen-vacancy centers and use it to investigate magnons in a magnetic insulator, finding that the magnon chemical potential can be controlled by driving the system's ferromagnetic resonance. We introduce a symmetry-based two-fluid theory describing the underlying magnon processes, measure the local thermomagnonic torque, and illustrate the detection sensitivity using electrically controlled spin injection. Our results pave the way for nanoscale control and imaging of spin transport in mesoscopic systems.

Description

Other Available Sources

Research Data

Keywords

Terms of Use

Metadata Only

Endorsement

Review

Supplemented By

Related Stories