A Dissymmetric [Gd2] Coordination Molecular Dimer Hosting six Addressable Spin Qubits

Autor/a

Luis Vitalla, Fernando

Alonso Gascón, Pablo Javier

Roubeau, Olivier

Velasco Amigó, Verónica

Zueco, David

Aguilà Avilés, David

Martínez, Jesús I.

Barrios Moreno, Leoní Alejandra

Aromí Bedmar, Guillem

Fecha de publicación

2024-01-26T15:53:11Z

2024-01-26T15:53:11Z

2020-11-20

2024-01-26T15:53:11Z

Resumen

Artificial magnetic molecules can host several spin qubits, which could then implement small-scale algorithms. In order to become of practical use, such molecular spin processors need to increase the available computational space and warrant universal operations. Here, we design, synthesize and fully characterize dissymetric molecular dimers hosting either one or two Gadolinium(III) ions. The strong sensitivity of Gadolinium magnetic anisotropy to its local coordination gives rise to different zero-field splittings at each metal site. As a result, the [LaGd] and [GdLu] complexes provide realizations of distinct spin qudits with eight unequally spaced levels. In the [Gd2] dimer, these properties are combined with a Gd-Gd magnetic interaction, sufficiently strong to lift all level degeneracies, yet sufficiently weak to keep all levels within an experimentally accessible energy window. The spin Hamiltonian of this dimer allows a complete set of operations to act as a 64-dimensional all-electron spin qudit, or, equivalently, as six addressable qubits. Electron paramagnetic resonance experiments show that resonant transitions between different spin states can be coherently controlled, with coherence times TM of the order of 1 µs limited by hyperfine interactions. Coordination complexes with embedded quantum functionalities are promising building blocks for quantum computation and simulation hybrid platforms.

Tipo de documento

Artículo
Versión publicada

Lengua

Inglés

Materias y palabras clave

Ordinadors quàntics; Anisotropia; Quantum computers; Anisotropy

Publicado por

Springer Nature

Documentos relacionados

Reproducció del document publicat a: https://doi.org/10.1038/s42004-020-00422-w

Communications Chemistry, 2020, vol. 3, p. 1-11

https://doi.org/10.1038/s42004-020-00422-w

Derechos

cc-by (c) Luis, F. et al., 2020

http://creativecommons.org/licenses/by/4.0/