Using electron spins within molecules for quantum information processing (QIP) was first proposed by Leuenberger and Loss (1), who showed how the Grover algorithm could be mapped onto a Mn12 cage (2). Since then several groups have examined two-level (S = ½) molecular spin systems as possible qubits (3-12). There has also been a report of the implementation of the Grover algorithm in a four-level molecular qudit (13). A major challenge is to protect the spin qubit from noise that causes loss of phase information; strategies to minimize the impact of noise on qubits can be categorized as corrective, reductive, or protective. Corrective approaches allow noise and correct for its impact on the qubit using advanced microwave pulse sequences (3)...
Quantum information processors have been shown theoretically to outperform their classical counterpa...
Molecular magnetism is reaching a degree of development that will allow for the rational design of s...
We demonstrate, numerically, the possibility of manipulating the spin states of molecular nanomagnet...
We show that the electron spin phase memory time, the most important property of a molecular nanomag...
Thanks to the large number of levels which can be coherently manipulated, molecular spin systems con...
Resumen del trabajo presentado al Simposio Internacional de Tecnologías Cuánticas (International Sym...
Optically addressable spins are a promising platform for quantum information science due to their co...
Spins in solids or in molecules possess discrete energy levels, and the associated quantum states ca...
Molecular Nanomagnets may enable the implementation of qudit-based quantum error-correction codes wh...
We review the implementation of quantum information processing using quantum spins and pulsed spin r...
Quantum bits (qubits) constitute the most elementary building-blocks of any quantum technology, wher...
The realization of spin-based logical gates crucially depends on magnetically coupled spin qubits. T...
Molecular spin qubits are chemical nanoobjects with promising applications that are so far hampered ...
Since the molecular electronic spin emerged as one of the promising technologies to implement the qu...
Quantum computing is an emerging area within the information sciences revolving around the concept o...
Quantum information processors have been shown theoretically to outperform their classical counterpa...
Molecular magnetism is reaching a degree of development that will allow for the rational design of s...
We demonstrate, numerically, the possibility of manipulating the spin states of molecular nanomagnet...
We show that the electron spin phase memory time, the most important property of a molecular nanomag...
Thanks to the large number of levels which can be coherently manipulated, molecular spin systems con...
Resumen del trabajo presentado al Simposio Internacional de Tecnologías Cuánticas (International Sym...
Optically addressable spins are a promising platform for quantum information science due to their co...
Spins in solids or in molecules possess discrete energy levels, and the associated quantum states ca...
Molecular Nanomagnets may enable the implementation of qudit-based quantum error-correction codes wh...
We review the implementation of quantum information processing using quantum spins and pulsed spin r...
Quantum bits (qubits) constitute the most elementary building-blocks of any quantum technology, wher...
The realization of spin-based logical gates crucially depends on magnetically coupled spin qubits. T...
Molecular spin qubits are chemical nanoobjects with promising applications that are so far hampered ...
Since the molecular electronic spin emerged as one of the promising technologies to implement the qu...
Quantum computing is an emerging area within the information sciences revolving around the concept o...
Quantum information processors have been shown theoretically to outperform their classical counterpa...
Molecular magnetism is reaching a degree of development that will allow for the rational design of s...
We demonstrate, numerically, the possibility of manipulating the spin states of molecular nanomagnet...