Literature DB >> 29280628

Structural Effects on the Spin Dynamics of Potential Molecular Qubits.

Matteo Atzori1, Stefano Benci2, Elena Morra3, Lorenzo Tesi1, Mario Chiesa3, Renato Torre2,4, Lorenzo Sorace1, Roberta Sessoli1.   

Abstract

Control of spin-lattice magnetic relaxation is crucial to observe long quantum coherence in spin systems at reasonable temperatures. Such a control is most often extremely difficult to achieve, because of the coexistence of several relaxation mechanisms, that is direct, Raman, and Orbach. These are not always easy to relate to the energy states of the investigated system, because of the contribution to the relaxation of additional spin-phonon coupling phenomena mediated by intramolecular vibrations. In this work, we have investigated the effect of slight changes on the molecular structure of four vanadium(IV)-based potential spin qubits on their spin dynamics, studied by alternate current (AC) susceptometry. The analysis of the magnetic field dependence of the relaxation time correlates well with the low-energy vibrational modes experimentally detected by time-domain THz spectroscopy. This confirms and extends our preliminary observations on the role played by spin-vibration coupling in determining the fine structure of the spin-lattice relaxation time as a function of the magnetic field, for S = 1/2 potential spin qubits. This study represents a step forward in the use of low-energy vibrational spectroscopy as a prediction tool for the design of molecular spin qubits with long-lived quantum coherence. Indeed, quantum coherence times of ca. 4.0-6.0 μs in the 4-100 K range are observed for the best performing vanadyl derivatives identified through this multitechnique approach.

Entities:  

Year:  2017        PMID: 29280628     DOI: 10.1021/acs.inorgchem.7b02616

Source DB:  PubMed          Journal:  Inorg Chem        ISSN: 0020-1669            Impact factor:   5.165


  12 in total

1.  Chemical control of spin-lattice relaxation to discover a room temperature molecular qubit.

Authors:  M Jeremy Amdur; Kathleen R Mullin; Michael J Waters; Danilo Puggioni; Michael K Wojnar; Mingqiang Gu; Lei Sun; Paul H Oyala; James M Rondinelli; Danna E Freedman
Journal:  Chem Sci       Date:  2022-05-17       Impact factor: 9.969

2.  Structural insights for vanadium catecholates and iron‑sulfur clusters obtained from multiple data analysis methods applied to electron spin relaxation data.

Authors:  Thacien Ngendahimana; Richard Ayikpoe; John A Latham; Gareth R Eaton; Sandra S Eaton
Journal:  J Inorg Biochem       Date:  2019-09-02       Impact factor: 4.155

3.  A two-qubit molecular architecture for electron-mediated nuclear quantum simulation.

Authors:  Matteo Atzori; Alessandro Chiesa; Elena Morra; Mario Chiesa; Lorenzo Sorace; Stefano Carretta; Roberta Sessoli
Journal:  Chem Sci       Date:  2018-06-15       Impact factor: 9.825

4.  A concentrated array of copper porphyrin candidate qubits.

Authors:  Chung-Jui Yu; Matthew D Krzyaniak; Majed S Fataftah; Michael R Wasielewski; Danna E Freedman
Journal:  Chem Sci       Date:  2018-11-21       Impact factor: 9.825

5.  How do phonons relax molecular spins?

Authors:  Alessandro Lunghi; Stefano Sanvito
Journal:  Sci Adv       Date:  2019-09-27       Impact factor: 14.136

6.  Influence of ligand encapsulation on cobalt-59 chemical-shift thermometry.

Authors:  Tyler M Ozvat; Manuel E Peña; Joseph M Zadrozny
Journal:  Chem Sci       Date:  2019-06-05       Impact factor: 9.825

7.  Single-Molecule Magnets DyM2 N@C80 and Dy2 MN@C80 (M=Sc, Lu): The Impact of Diamagnetic Metals on Dy3+ Magnetic Anisotropy, Dy⋅⋅⋅Dy Coupling, and Mixing of Molecular and Lattice Vibrations.

Authors:  Lukas Spree; Christin Schlesier; Aram Kostanyan; Rasmus Westerström; Thomas Greber; Bernd Büchner; Stanislav M Avdoshenko; Alexey A Popov
Journal:  Chemistry       Date:  2020-02-06       Impact factor: 5.236

8.  Nuclear-spin-pattern control of electron-spin dynamics in a series of V(iv) complexes.

Authors:  Cassidy E Jackson; Chun-Yi Lin; Spencer H Johnson; Johan van Tol; Joseph M Zadrozny
Journal:  Chem Sci       Date:  2019-07-29       Impact factor: 9.825

Review 9.  A Molecular Approach to Quantum Sensing.

Authors:  Chung-Jui Yu; Stephen von Kugelgen; Daniel W Laorenza; Danna E Freedman
Journal:  ACS Cent Sci       Date:  2021-04-20       Impact factor: 14.553

10.  Molecular Nanomagnets as Qubits with Embedded Quantum-Error Correction.

Authors:  A Chiesa; E Macaluso; F Petiziol; S Wimberger; P Santini; S Carretta
Journal:  J Phys Chem Lett       Date:  2020-09-29       Impact factor: 6.475

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