Dynamical decoupling (DD) is a powerful method for controlling arbitrary open quantum systems. In quantum spin control, DD generally involves a sequence of timed spin flips (π rotations) arranged to either average out or selectively enhance coupling to the environment. Experimentally, errors in the spin flips are inevitably introduced, motivating efforts to optimize error-robust DD. Here we invert this paradigm: by introducing particular control “errors” in standard DD, namely, a small constant deviation from perfect π rotations (pulse adjustments), we show we obtain protocols that retain the advantages of DD while introducing the capabilities of quantum state readout and polarization transfer. We exploit this nuclear quantum state selectiv...
Quantum networks play an indispensable role in quantum information tasks such as secure communicatio...
Dynamic nuclear polarization, which transfers the spin polarization of electrons to nuclei, is routi...
The central-spin problem is a widely studied model of quantum decoherence. Dynamic nuclear polarizat...
Dynamical decoupling (DD) is a powerful method for controlling arbitrary open quantum systems. In qu...
The use of the nuclear spins surrounding electron spin qubits as quantum registers and long-lived me...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Nuclear Science and Engineering...
Nuclear spins in certain solids couple weakly to their environment, making them attractive candidate...
We demonstrate significant improvements of the spin coherence time of a dense ensemble of nitrogen-v...
Session T36 GOI: Focus Session: Semiconductor Qubits: Magnetic Control & Nuclear DynamicIn a semicon...
We employ the electronic spin of a single nitrogen-vacancy (NV) defect in diamond to detect and cont...
The pursuit of large-scale quantum computers poses two separate, though related, challenges: the nee...
Maintaining quantum coherence is a crucial requirement for quantum computation; hence protecting qua...
The field of quantum science and technology has generated many ideas for new revolutionary devices t...
We probe dephasing mechanisms within a quantum network node consisting of a single nitrogen-vacancy ...
We perform a detailed theoretical-experimental study of the dynamical decoupling (DD) of the nitroge...
Quantum networks play an indispensable role in quantum information tasks such as secure communicatio...
Dynamic nuclear polarization, which transfers the spin polarization of electrons to nuclei, is routi...
The central-spin problem is a widely studied model of quantum decoherence. Dynamic nuclear polarizat...
Dynamical decoupling (DD) is a powerful method for controlling arbitrary open quantum systems. In qu...
The use of the nuclear spins surrounding electron spin qubits as quantum registers and long-lived me...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Nuclear Science and Engineering...
Nuclear spins in certain solids couple weakly to their environment, making them attractive candidate...
We demonstrate significant improvements of the spin coherence time of a dense ensemble of nitrogen-v...
Session T36 GOI: Focus Session: Semiconductor Qubits: Magnetic Control & Nuclear DynamicIn a semicon...
We employ the electronic spin of a single nitrogen-vacancy (NV) defect in diamond to detect and cont...
The pursuit of large-scale quantum computers poses two separate, though related, challenges: the nee...
Maintaining quantum coherence is a crucial requirement for quantum computation; hence protecting qua...
The field of quantum science and technology has generated many ideas for new revolutionary devices t...
We probe dephasing mechanisms within a quantum network node consisting of a single nitrogen-vacancy ...
We perform a detailed theoretical-experimental study of the dynamical decoupling (DD) of the nitroge...
Quantum networks play an indispensable role in quantum information tasks such as secure communicatio...
Dynamic nuclear polarization, which transfers the spin polarization of electrons to nuclei, is routi...
The central-spin problem is a widely studied model of quantum decoherence. Dynamic nuclear polarizat...