The great success of point defects and dopants in semiconductors for quantum information processing has invigorated a search for molecules with analogous properties. Flexibility and tunability of desired properties in a large chemical space have great advantages over solid-state systems. The properties analogous to point defects were demonstrated in Cr(IV)-based molecular family, Cr(IV)(aryl)$_4$, where the electronic spin states were optically initialized, read out, and controlled. Despite this kick-start, there is still a large room for enhancing properties crucial for molecular qubits. Here we provide computational insights into key properties of the Cr(IV)-based molecules aimed at assisting chemical design of efficient molecular qubits....
Paramagnetic solid-state NMR, extended X-ray absorption fine structure (EXAFS), and Raman spectrosco...
Paramagnetic solid-state NMR, extended X-ray absorption fine structure (EXAFS), and Raman spectrosco...
Molecular magnets have been recently proposed as possible building blocks for a solid-state quantum ...
The inherent atomistic precision of synthetic chemistry enables bottom-up structural control over qu...
The inherent atomistic precision of synthetic chemistry enables bottom-up structural control over qu...
The field of quantum information processing aims to leverage the unique physics of quantum mechanics...
The implementation of quantum computation (QC) would revolutionize scientific fields ranging from en...
Optically addressable spins are a promising platform for quantum information science due to their co...
The miniaturisation of semiconductors is running into physical limitations. In order to further enha...
We show that the electron spin phase memory time, the most important property of a molecular nanomag...
Spin-bearing molecules are promising building blocks for quantum technologies as they can be chemica...
Paramagnetic solid-state NMR, extended X-ray absorption fine structure (EXAFS), and Raman spectrosco...
Paramagnetic solid-state NMR, extended X-ray absorption fine structure (EXAFS), and Raman spectrosco...
Paramagnetic solid-state NMR, extended X-ray absorption fine structure (EXAFS), and Raman spectrosco...
We show that the electron spin phase memory time, the most important property of a molecular nanomag...
Paramagnetic solid-state NMR, extended X-ray absorption fine structure (EXAFS), and Raman spectrosco...
Paramagnetic solid-state NMR, extended X-ray absorption fine structure (EXAFS), and Raman spectrosco...
Molecular magnets have been recently proposed as possible building blocks for a solid-state quantum ...
The inherent atomistic precision of synthetic chemistry enables bottom-up structural control over qu...
The inherent atomistic precision of synthetic chemistry enables bottom-up structural control over qu...
The field of quantum information processing aims to leverage the unique physics of quantum mechanics...
The implementation of quantum computation (QC) would revolutionize scientific fields ranging from en...
Optically addressable spins are a promising platform for quantum information science due to their co...
The miniaturisation of semiconductors is running into physical limitations. In order to further enha...
We show that the electron spin phase memory time, the most important property of a molecular nanomag...
Spin-bearing molecules are promising building blocks for quantum technologies as they can be chemica...
Paramagnetic solid-state NMR, extended X-ray absorption fine structure (EXAFS), and Raman spectrosco...
Paramagnetic solid-state NMR, extended X-ray absorption fine structure (EXAFS), and Raman spectrosco...
Paramagnetic solid-state NMR, extended X-ray absorption fine structure (EXAFS), and Raman spectrosco...
We show that the electron spin phase memory time, the most important property of a molecular nanomag...
Paramagnetic solid-state NMR, extended X-ray absorption fine structure (EXAFS), and Raman spectrosco...
Paramagnetic solid-state NMR, extended X-ray absorption fine structure (EXAFS), and Raman spectrosco...
Molecular magnets have been recently proposed as possible building blocks for a solid-state quantum ...