The ability to prepare physical qubits in specific initial quantum states is a critical requirement for their use in quantum information science (QIS). Subnanosecond photoinduced electron transfer in a structurally well-defined donor–acceptor system can be used to produce an entangled spin qubit (radical) pair in a pure initial singlet state fulfilling this criterion. Synthetic DNA is a promising platform on which to build spin qubit arrays with fixed spatial relationships; therefore, we have prepared a series of DNA hairpins in which naphthalenediimide (NDI) is the chromophore/acceptor hairpin linker, variable-length diblock A- and G-tracts are intermediate donors, and a stilbenediether (Sd) is the terminal donor. Photoexcitation of NDI in...
The representation of information within the spins of electrons and nuclei has been a powerful metho...
Controlling molecular spin quantum bits optically offers the potential to effectively reduce decoher...
InAs quantum dots (QDs) can be used as optically coupled quantum storage devices for quantum informa...
DNA hairpins having both a tethered anthraquinone (Aq) end-capping group and a perylenediimide (PDI)...
Ultrafast photodriven electron transfer reactions starting from an excited singlet state in an organ...
Photoexcitation of the electron donor (D) within a linear, covalent donor–acceptor–acceptor molecule...
A series of DNA hairpins (<b>Aq<b>G<i>n</i></b></b>) possessing a tethered anthraquinone (Aq) end-ca...
Ultrafast photodriven electron transfer reactions starting from an excited singlet state in an organ...
The highly parallel nature of the fundamental principles of quantum mechanics means that certain key...
This publication presents the first comprehensive experimental study of electron spin coherences in ...
The enormous theoretical potential of quantum information processing (QIP) is driving the pursuit fo...
Single electron spin in a semiconductor quantum dot (QD) and single photon wavepacket propagating in...
The enormous theoretical potential of quantum information processing (QIP) is driving the pursuit f...
The representation of information within the spins of electrons and nuclei has been a powerful metho...
The enormous theoretical potential of quantum information processing (QIP) is driving the pursuit f...
The representation of information within the spins of electrons and nuclei has been a powerful metho...
Controlling molecular spin quantum bits optically offers the potential to effectively reduce decoher...
InAs quantum dots (QDs) can be used as optically coupled quantum storage devices for quantum informa...
DNA hairpins having both a tethered anthraquinone (Aq) end-capping group and a perylenediimide (PDI)...
Ultrafast photodriven electron transfer reactions starting from an excited singlet state in an organ...
Photoexcitation of the electron donor (D) within a linear, covalent donor–acceptor–acceptor molecule...
A series of DNA hairpins (<b>Aq<b>G<i>n</i></b></b>) possessing a tethered anthraquinone (Aq) end-ca...
Ultrafast photodriven electron transfer reactions starting from an excited singlet state in an organ...
The highly parallel nature of the fundamental principles of quantum mechanics means that certain key...
This publication presents the first comprehensive experimental study of electron spin coherences in ...
The enormous theoretical potential of quantum information processing (QIP) is driving the pursuit fo...
Single electron spin in a semiconductor quantum dot (QD) and single photon wavepacket propagating in...
The enormous theoretical potential of quantum information processing (QIP) is driving the pursuit f...
The representation of information within the spins of electrons and nuclei has been a powerful metho...
The enormous theoretical potential of quantum information processing (QIP) is driving the pursuit f...
The representation of information within the spins of electrons and nuclei has been a powerful metho...
Controlling molecular spin quantum bits optically offers the potential to effectively reduce decoher...
InAs quantum dots (QDs) can be used as optically coupled quantum storage devices for quantum informa...