Precisely knowing an interaction Hamiltonian is crucial to realize quantum information tasks, especially to experimentally demonstrate a quantum computer and a quantum memory. We propose a scheme to experimentally evaluate the spin-spin interaction for a two-qubit system by the weak measurement technique initiated by Yakir Aharonov and his colleagues. Furthermore, we numerically confirm our proposed scheme in a specific system of a nitrogen vacancy center in diamond. This means that the weak measurement can also be taken as a concrete example of the quantum process tomography
An important task for quantum-information processing is optimal discrimination between two nonorthog...
For decades, searches for exotic spin interactions have used increasingly-precise laboratory measure...
We report sensitive detection of the nuclear quadrupolar interaction of the N14 nuclear spin of the ...
The theory of weak quantum measurements is developed for quantum dot spin qubits. Building on recent...
We propose a protocol for a controlled experiment to measure a weak value of the electron's spin in ...
We propose an efficient quantum measurement protocol for the hyperfine interaction between the elect...
We propose a protocol for a controlled experiment to measure a weak value of the electron’s spin in ...
Gaining precise control over quantum systems is crucial for applications in quantum information proc...
The construction of two-qubit gates appropriate for universal quantum computation is of enormous imp...
This thesis presents a set of experiments that explore the possible realisation of a macroscopic qua...
A negatively-charged nitrogen-vacancy (NV) center in diamond is a promising system for quantum compu...
We investigate the estimation of a small interaction parameter from the outcomes of weak quantum mea...
We give a critical discussion of a recent Letter of Aharonov, Albert, and Vaidman. Although their wo...
We experimentally isolate, characterize, and coherently control up to six individual nuclear spins t...
A method was recently proposed and experimentally realized for characterizing a quantum state by dir...
An important task for quantum-information processing is optimal discrimination between two nonorthog...
For decades, searches for exotic spin interactions have used increasingly-precise laboratory measure...
We report sensitive detection of the nuclear quadrupolar interaction of the N14 nuclear spin of the ...
The theory of weak quantum measurements is developed for quantum dot spin qubits. Building on recent...
We propose a protocol for a controlled experiment to measure a weak value of the electron's spin in ...
We propose an efficient quantum measurement protocol for the hyperfine interaction between the elect...
We propose a protocol for a controlled experiment to measure a weak value of the electron’s spin in ...
Gaining precise control over quantum systems is crucial for applications in quantum information proc...
The construction of two-qubit gates appropriate for universal quantum computation is of enormous imp...
This thesis presents a set of experiments that explore the possible realisation of a macroscopic qua...
A negatively-charged nitrogen-vacancy (NV) center in diamond is a promising system for quantum compu...
We investigate the estimation of a small interaction parameter from the outcomes of weak quantum mea...
We give a critical discussion of a recent Letter of Aharonov, Albert, and Vaidman. Although their wo...
We experimentally isolate, characterize, and coherently control up to six individual nuclear spins t...
A method was recently proposed and experimentally realized for characterizing a quantum state by dir...
An important task for quantum-information processing is optimal discrimination between two nonorthog...
For decades, searches for exotic spin interactions have used increasingly-precise laboratory measure...
We report sensitive detection of the nuclear quadrupolar interaction of the N14 nuclear spin of the ...