SummaryQuantum information processing (QIP) could revolutionize how we simulate and understand quantum systems. Any QIP scheme requires both individual units (qubits) that have long phase memories and switchable units that can be placed between the qubits. Here, we describe supramolecular systems where {Cr7Ni} rings are used as qubits, linked by redox-switchable {Ru2M} oxo-centered triangles (M = Zn, Ni, or Co). The supramolecular assemblies have been structurally characterized and involve two {Cr7Ni} rings bound to {Ru2M} triangles through iso-nicotinate ligands. Detailed physical studies, including electrochemistry and electron paramagnetic resonance spectroscopy, show that when M = Co, the supramolecular assembly has the physical charact...
Hyperfine interactions in a single Mn-ion confined in a quantum dot (QD) are exploited to create a q...
A good qubit must have a coherence time long enough for gate operations to be performed. Avoided lev...
This article is part of the themed collection: 2021 Chemical Science HOT Article Collection.We repor...
Quantum information processing (QIP) could revolutionize how we simulate and understand quantum syst...
SummaryQuantum information processing (QIP) could revolutionize how we simulate and understand quant...
The physical implementation of quantum information processing relies on individual modules - qubits ...
Any technology for quantum information processing (QIP) must embody within it quantum bits (qubits) ...
Proposals for systems embodying condensed matter spin qubits cover a very wide range of length scale...
The physical implementation of quantum information processing (QIP) is an emerging field that requir...
Dipolar coupled multi-spin systems have the potential to be used as molecular qubits. Herein we repo...
Quantum information processing (QIP) could revolutionize areas ranging from chemical modeling to cry...
Controlling molecular spin quantum bits optically offers the potential to effectively reduce decoher...
Supramolecular chemistry enables nanoscale engineering of scalable structures,by introducing contro...
Molecular nanomagnets are attractive candidate qubits because of their wide inter- and intra-molecul...
Enhanced coherence in HoW10 molecular spin qubits has been demonstrated by use of clock-transitions ...
Hyperfine interactions in a single Mn-ion confined in a quantum dot (QD) are exploited to create a q...
A good qubit must have a coherence time long enough for gate operations to be performed. Avoided lev...
This article is part of the themed collection: 2021 Chemical Science HOT Article Collection.We repor...
Quantum information processing (QIP) could revolutionize how we simulate and understand quantum syst...
SummaryQuantum information processing (QIP) could revolutionize how we simulate and understand quant...
The physical implementation of quantum information processing relies on individual modules - qubits ...
Any technology for quantum information processing (QIP) must embody within it quantum bits (qubits) ...
Proposals for systems embodying condensed matter spin qubits cover a very wide range of length scale...
The physical implementation of quantum information processing (QIP) is an emerging field that requir...
Dipolar coupled multi-spin systems have the potential to be used as molecular qubits. Herein we repo...
Quantum information processing (QIP) could revolutionize areas ranging from chemical modeling to cry...
Controlling molecular spin quantum bits optically offers the potential to effectively reduce decoher...
Supramolecular chemistry enables nanoscale engineering of scalable structures,by introducing contro...
Molecular nanomagnets are attractive candidate qubits because of their wide inter- and intra-molecul...
Enhanced coherence in HoW10 molecular spin qubits has been demonstrated by use of clock-transitions ...
Hyperfine interactions in a single Mn-ion confined in a quantum dot (QD) are exploited to create a q...
A good qubit must have a coherence time long enough for gate operations to be performed. Avoided lev...
This article is part of the themed collection: 2021 Chemical Science HOT Article Collection.We repor...