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Quantum algorithms for quantum dynamics
Among the many computational challenges faced across different disciplines, quantum-
mechanical systems pose some of the hardest ones and offer a natural playground for the …
mechanical systems pose some of the hardest ones and offer a natural playground for the …
Molecular nanomagnets: a viable path toward quantum information processing?
Molecular nanomagnets (MNMs), molecules containing interacting spins, have been a
playground for quantum mechanics. They are characterized by many accessible low-energy …
playground for quantum mechanics. They are characterized by many accessible low-energy …
Chirality‐Induced Spin Selectivity: An Enabling Technology for Quantum Applications
Molecular spins are promising building blocks of future quantum technologies thanks to the
unparalleled flexibility provided by chemistry, which allows the design of complex structures …
unparalleled flexibility provided by chemistry, which allows the design of complex structures …
Proof-of-concept quantum simulator based on molecular spin qudits
The use of d-level qudits instead of two-level qubits can largely increase the power of
quantum logic for many applications, ranging from quantum simulations to quantum error …
quantum logic for many applications, ranging from quantum simulations to quantum error …
A perspective on scaling up quantum computation with molecular spins
Artificial magnetic molecules can contribute to progressing toward large scale quantum
computation by (a) integrating multiple quantum resources and (b) reducing the …
computation by (a) integrating multiple quantum resources and (b) reducing the …
Universal qudit gate synthesis for transmons
Gate-based quantum computers typically encode and process information in two-
dimensional units called qubits. Using d-dimensional qudits instead may offer intrinsic …
dimensional units called qubits. Using d-dimensional qudits instead may offer intrinsic …
Blueprint for a molecular-spin quantum processor
The implementation of a universal quantum processor still poses fundamental issues related
to error mitigation and correction, which demand investigation of also platforms and …
to error mitigation and correction, which demand investigation of also platforms and …
Quantum error correction with molecular spin qudits
Thanks to the large number of levels which can be coherently manipulated, molecular spin
systems constitute a very promising platform for quantum computing. Indeed, they can …
systems constitute a very promising platform for quantum computing. Indeed, they can …
Photoinduced magnetic exchange-jump promotes ground state biradical electron spin polarization
Photoinduced electron spin polarization (ESP) is reported in the electronic ground states of
three Pt (II) complexes comprised of two S= 1/2 nitronyl nitroxide (NN) radicals attached …
three Pt (II) complexes comprised of two S= 1/2 nitronyl nitroxide (NN) radicals attached …
Molecular nanomagnets with competing interactions as optimal units for qudit-based quantum computation
Quantum systems displaying many accessible levels could be very powerful units of
forthcoming quantum computing architectures. Indeed, the large number of available states …
forthcoming quantum computing architectures. Indeed, the large number of available states …