Over recent decades, much effort has been made to lengthen spin relaxation/decoherence times of single-molecule magnets and molecular qubits by following different chemical design rules as maximizing the total spin value, controlling symmetry, enhancing the ligand field or inhibiting key vibrational modes. Simultaneously, electronic structure calculations have been employed to provide an understanding of the processes involved in the spin dynamics of molecular systems and served to refine or introduce new design rules. This review focuses on contemporary theoretical approaches focused on the calculation of spin relaxation/decoherence times, highlighting their main features and scope. Fundamental aspects of experimental techniques for the de...
To design molecular spin qubits and nanomagnets operating at high temperatures, there is an urgent n...
Recent studies revealed that magnetic molecules with single spin centers showed exciting phenomena r...
Using X-band pulsed electron-spin resonance, we report the intrinsic spin-lattice (T1) and phase-coh...
Very recently the closely related fields of molecular spin qubits, single ion magnets and single ato...
Molecular magnets are ideal systems to probe the realm that borders quantum and classical physics, a...
Molecular magnetism is reaching a degree of development that will allow for the rational design of s...
© 2020 Kieran HymasIn recent years, molecular analogues to electronic devices have been sought after...
We review the implementation of quantum information processing using quantum spins and pulsed spin r...
Developing quantum bits (qubits) exhibiting room temperature electron spin coherence is a key goal o...
To design molecular spin qubits with enhanced quantum coherence, a control of the coupling between t...
The realization of spin-based logical gates crucially depends on magnetically coupled spin qubits. T...
We provide a perspective on how single-molecule magnets can offer a platform to combine quantum tran...
Certain computational tasks can be efficiently implemented using quantum logic, in which the informa...
Experimental methods employing spin resonance effects (nuclear magnetic resonance and electron spin ...
The synthesis and study of magnetic nanostructures is of both intense scientific and technological i...
To design molecular spin qubits and nanomagnets operating at high temperatures, there is an urgent n...
Recent studies revealed that magnetic molecules with single spin centers showed exciting phenomena r...
Using X-band pulsed electron-spin resonance, we report the intrinsic spin-lattice (T1) and phase-coh...
Very recently the closely related fields of molecular spin qubits, single ion magnets and single ato...
Molecular magnets are ideal systems to probe the realm that borders quantum and classical physics, a...
Molecular magnetism is reaching a degree of development that will allow for the rational design of s...
© 2020 Kieran HymasIn recent years, molecular analogues to electronic devices have been sought after...
We review the implementation of quantum information processing using quantum spins and pulsed spin r...
Developing quantum bits (qubits) exhibiting room temperature electron spin coherence is a key goal o...
To design molecular spin qubits with enhanced quantum coherence, a control of the coupling between t...
The realization of spin-based logical gates crucially depends on magnetically coupled spin qubits. T...
We provide a perspective on how single-molecule magnets can offer a platform to combine quantum tran...
Certain computational tasks can be efficiently implemented using quantum logic, in which the informa...
Experimental methods employing spin resonance effects (nuclear magnetic resonance and electron spin ...
The synthesis and study of magnetic nanostructures is of both intense scientific and technological i...
To design molecular spin qubits and nanomagnets operating at high temperatures, there is an urgent n...
Recent studies revealed that magnetic molecules with single spin centers showed exciting phenomena r...
Using X-band pulsed electron-spin resonance, we report the intrinsic spin-lattice (T1) and phase-coh...