Gadolinium Spin Decoherence Mechanisms at High Magnetic Fields

Wilson CB, Qi M, Han S, Sherwin MS (2023)
Journal of Physical Chemistry Letters.

Zeitschriftenaufsatz | E-Veröff. vor dem Druck | Englisch
 
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Autor*in
Wilson, C Blake; Qi, MianUniBi ; Han, Songi; Sherwin, Mark S
Abstract / Bemerkung
Favorable relaxation processes, high-field spectral properties, and biological compatibility have made spin-7/2 Gd3+-based spin labels an increasingly popular choice for protein structure studies using high-field electron paramagnetic resonance. However, high-field relaxation and decoherence in ensembles of half-integer high-spin systems, such as Gd3+, remain poorly understood. We report spin-lattice (T1) and phase memory (TM) relaxation times at 8.6 T (240 GHz), and we present the first comprehensive model of high-field, high-spin decoherence accounting for both the electron spin concentration and temperature. The model includes four principal mechanisms driving decoherence: energy-conserving electron spin flip-flops, direct "T1" spin-lattice relaxation-driven electron spin flip processes, indirect T1-driven flips of nearby electron spins, and nuclear spin flip-flops. Mechanistic insight into decoherence can inform the design of experiments making use of Gd3+ as spin probes or relaxivity agents and can be used to measure local average interspin distances as long as 17 nm.
Erscheinungsjahr
2023
Zeitschriftentitel
Journal of Physical Chemistry Letters
eISSN
1948-7185
Page URI
https://pub.uni-bielefeld.de/record/2984748

Zitieren

Wilson CB, Qi M, Han S, Sherwin MS. Gadolinium Spin Decoherence Mechanisms at High Magnetic Fields. Journal of Physical Chemistry Letters. 2023.
Wilson, C. B., Qi, M., Han, S., & Sherwin, M. S. (2023). Gadolinium Spin Decoherence Mechanisms at High Magnetic Fields. Journal of Physical Chemistry Letters. https://doi.org/10.1021/acs.jpclett.3c01847
Wilson, C Blake, Qi, Mian, Han, Songi, and Sherwin, Mark S. 2023. “Gadolinium Spin Decoherence Mechanisms at High Magnetic Fields”. Journal of Physical Chemistry Letters.
Wilson, C. B., Qi, M., Han, S., and Sherwin, M. S. (2023). Gadolinium Spin Decoherence Mechanisms at High Magnetic Fields. Journal of Physical Chemistry Letters.
Wilson, C.B., et al., 2023. Gadolinium Spin Decoherence Mechanisms at High Magnetic Fields. Journal of Physical Chemistry Letters.
C.B. Wilson, et al., “Gadolinium Spin Decoherence Mechanisms at High Magnetic Fields”, Journal of Physical Chemistry Letters, 2023.
Wilson, C.B., Qi, M., Han, S., Sherwin, M.S.: Gadolinium Spin Decoherence Mechanisms at High Magnetic Fields. Journal of Physical Chemistry Letters. (2023).
Wilson, C Blake, Qi, Mian, Han, Songi, and Sherwin, Mark S. “Gadolinium Spin Decoherence Mechanisms at High Magnetic Fields”. Journal of Physical Chemistry Letters (2023).

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PMID: 37976425
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