Time-optimized pulsed dynamic nuclear polarization

Pulsed dynamic nuclear polarization (DNP) techniques can accomplish electron-nuclear polarization transfer efficiently with an enhancement factor that is independent of the Zeeman field. However, they often require large Rabi frequencies and, therefore, high-power microwave irradiation. Here, we pro...

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Veröffentlicht in:Science advances 2019-01, Vol.5 (1), p.eaav6909-eaav6909
Hauptverfasser: Tan, Kong Ooi, Yang, Chen, Weber, Ralph T, Mathies, Guinevere, Griffin, Robert G
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Sprache:eng
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Zusammenfassung:Pulsed dynamic nuclear polarization (DNP) techniques can accomplish electron-nuclear polarization transfer efficiently with an enhancement factor that is independent of the Zeeman field. However, they often require large Rabi frequencies and, therefore, high-power microwave irradiation. Here, we propose a new low-power DNP sequence for static samples that is composed of a train of microwave pulses of length τ spaced with delays . A particularly robust DNP condition using a period τ = τ + set to ~1.25 times the Larmor period τ is investigated which is a time-optimized pulsed DNP sequence (TOP-DNP). At 0.35 T, we obtained an enhancement of ~200 using TOP-DNP compared to ~172 with nuclear spin orientation via electron spin locking (NOVEL), a commonly used pulsed DNP sequence, while using only ~7% microwave power required for NOVEL. Experimental data and simulations at higher fields suggest a field-independent enhancement factor, as predicted by the effective Hamiltonian.
ISSN:2375-2548
2375-2548
DOI:10.1126/sciadv.aav6909