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May 31, 20260 citationsOpen Access

Dual Bilinear Rotations

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YWYannik T. WoordesBLBurkhard Luy

Key Points

  • This research aims to introduce Dual Bilinear Rotations for simultaneous spin system manipulations on coupled spins I and S.
  • Introduced a new approach for dual bilinear rotations for spin systems.
  • Presented a quadruple J-resolved experiment to obtain decoupled spectra.
  • Discussed applications in multi-receive experiments and pulse sequence design.
  • Demonstrated simultaneous selective manipulations on spins I and S.
  • Achieved fully decoupled spectra tailored for various spin systems.
  • Showed that dual manipulations could enhance flexibility in pulse sequence design.

Abstract

Abstract. Bilinear rotations imply differing rotations on a spin I depending on the presence or absence of a bilinear coupling Hamiltonian to a heteronucleus S. As such, spin system selective inversions using BIRD elements, excitations using TANGO, or general (effective) rotations using BANGO and/or BIG-BIRD, as well as multiplicity edited rotations are achievable. So far, the well-defined rotations were only imposed on a single spin, e.g. I, while the coupled heteronucleus experienced only an inversion or no rotation at all. Here, we introduce Dual Bilinear Rotations, that simultaneously allow spin system selective manipulations on both spins I and S as compared to the coupled spin system IS. Particularly with the advent of multi-receive experiments and/or supersequences with the necessity to excite and store specific spin systems in a flexible way, this may open new possibilities in pulse sequence design. A general derivation of the approach is given and a quadruple J-resolved type experiment for obtaining fully decoupled spectra optmized for different spin systems is introduced for demonstration.

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Cite This Study

Woordes et al. (2026) studied this question.

synapsesocial.com/papers/6a1bd2845783ba022b6fdf25https://doi.org/10.5445/ir/1000193687
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