We minimize the stray electric field in a linear Paul trap quickly and accurately, by applying interferometry pulse sequences to a trapped ion optical qubit. The interferometry sequences are sensitive to the change of ion equilibrium position when the trap stiffness is changed, and we use this to determine the stray electric field. The simplest pulse sequence is a two-pulse Ramsey sequence, and longer sequences with multiple pulses offer a higher precision. The methods allow the stray field strength to be minimized beyond state-of-the-art levels. Using a sequence of nine pulses we reduce the 2D stray field strength to (10.5 +/- 0.8) mV m(-1) in 11 s measurement time. The pulse sequences are easy to implement and automate, and they are robus...
International audienceA new generation of atomic sensors using ultra-narrow optical clock transition...
We experimentally demonstrate the coherent manipulation of atomic states in far-detuned dipole traps...
Scalability is a challenging yet key aspect required for large scale quantum computing and simulati...
We minimize the stray electric field in a linear Paul trap quickly and accurately, by applying inter...
The micromotion of ion crystals confined in Paul traps is usually considered an inconvenient nuisanc...
This thesis reports on experiments towards improving the quantum coherence of trapped ion qubits, su...
The "second quantum revolution" is coming: New fields of research, such as quantum computing and qua...
Trapped ions are one of the promising platforms that realise a quantum bit, or qubit, in quantum com...
We discuss quantum variational optimization of Ramsey interferometry with ensembles of $N$ entangled...
The Ramsey interferometer is a prime example of precise control at the quantum level. It is usually ...
Radio-frequency-induced micromotion in trapped ion systems is typically minimized or circumvented to...
We present a study of the coherence properties of a variety of motional states of a single ion confi...
Since the dawn of quantum information science, laser-cooled trapped atomic ions have been one of the...
International audienceA new class of atomic interferences using ultranarrow optical transitions are ...
Protocols used in quantum information and precision spectroscopy rely on efficient internal quantum ...
International audienceA new generation of atomic sensors using ultra-narrow optical clock transition...
We experimentally demonstrate the coherent manipulation of atomic states in far-detuned dipole traps...
Scalability is a challenging yet key aspect required for large scale quantum computing and simulati...
We minimize the stray electric field in a linear Paul trap quickly and accurately, by applying inter...
The micromotion of ion crystals confined in Paul traps is usually considered an inconvenient nuisanc...
This thesis reports on experiments towards improving the quantum coherence of trapped ion qubits, su...
The "second quantum revolution" is coming: New fields of research, such as quantum computing and qua...
Trapped ions are one of the promising platforms that realise a quantum bit, or qubit, in quantum com...
We discuss quantum variational optimization of Ramsey interferometry with ensembles of $N$ entangled...
The Ramsey interferometer is a prime example of precise control at the quantum level. It is usually ...
Radio-frequency-induced micromotion in trapped ion systems is typically minimized or circumvented to...
We present a study of the coherence properties of a variety of motional states of a single ion confi...
Since the dawn of quantum information science, laser-cooled trapped atomic ions have been one of the...
International audienceA new class of atomic interferences using ultranarrow optical transitions are ...
Protocols used in quantum information and precision spectroscopy rely on efficient internal quantum ...
International audienceA new generation of atomic sensors using ultra-narrow optical clock transition...
We experimentally demonstrate the coherent manipulation of atomic states in far-detuned dipole traps...
Scalability is a challenging yet key aspect required for large scale quantum computing and simulati...