International audienceUsing Optimal Control Theory (OCT), we design fast ramps for the controlled transport of Bose-Einstein condensates with atom chips’ magnetic traps. These ramps are engineered in the context of precision atom interferometry experiments and support transport over large distances, typically of the order of 1 mm, i.e . about 1,000 times the size of the atomic clouds, yet with durations not exceeding 200 ms. We show that with such transport durations of the order of the trap period, one can recover the ground state of the final trap at the end of the transport. The performance of the OCT procedure is compared to that of a Shortcut-To-Adiabaticity (STA) protocol and the respective advantages/disadvantages of the OCT treatmen...
We design optimal harmonic-trap trajectories to transport cold atoms without final excitation, combi...
In this thesis I discuss work that has been carried out on the dynamics of a Bose Einstein condensat...
We describe a proof-of-principle experiment on a fully permanent magnet atom chip. We study ultracol...
Using Optimal Control Theory (OCT), we design fast ramps for the controlled transport of Bose-Einste...
Using Optimal Control Theory (OCT), we design fast ramps for the controlled transport of Bose-Einste...
Using Optimal Control Theory (OCT), we design fast ramps for the controlled transport of Bose-Einste...
Abstract. We present a detailed theoretical analysis of the implementation of shortcut-to-adiabatici...
We present a detailed theoretical analysis of the implementation of shortcut-to-adiabaticity protoco...
Magnetische Mikrofallen auf Atom-Chips ermöglichen eine präzise und robuste Quantenkontrolle von Bos...
We applied an optimal control algorithm to an ultra-cold atomic system for constructing an atomic Sa...
Atom chips are an excellent tool for studying ultracold degenerate quantum gases, due to the high de...
This work experimentally demonstrates a new method of optimizing the transport of cold atoms via mod...
Atom chips are an excellent tool for studying ultracold degenerate quantum gases, due to the high de...
This thesis describes the design, construction and optimisation of a new apparatus to produce Bose-E...
We design optimal harmonic-trap trajectories to transport cold atoms without final excitation, combi...
We design optimal harmonic-trap trajectories to transport cold atoms without final excitation, combi...
In this thesis I discuss work that has been carried out on the dynamics of a Bose Einstein condensat...
We describe a proof-of-principle experiment on a fully permanent magnet atom chip. We study ultracol...
Using Optimal Control Theory (OCT), we design fast ramps for the controlled transport of Bose-Einste...
Using Optimal Control Theory (OCT), we design fast ramps for the controlled transport of Bose-Einste...
Using Optimal Control Theory (OCT), we design fast ramps for the controlled transport of Bose-Einste...
Abstract. We present a detailed theoretical analysis of the implementation of shortcut-to-adiabatici...
We present a detailed theoretical analysis of the implementation of shortcut-to-adiabaticity protoco...
Magnetische Mikrofallen auf Atom-Chips ermöglichen eine präzise und robuste Quantenkontrolle von Bos...
We applied an optimal control algorithm to an ultra-cold atomic system for constructing an atomic Sa...
Atom chips are an excellent tool for studying ultracold degenerate quantum gases, due to the high de...
This work experimentally demonstrates a new method of optimizing the transport of cold atoms via mod...
Atom chips are an excellent tool for studying ultracold degenerate quantum gases, due to the high de...
This thesis describes the design, construction and optimisation of a new apparatus to produce Bose-E...
We design optimal harmonic-trap trajectories to transport cold atoms without final excitation, combi...
We design optimal harmonic-trap trajectories to transport cold atoms without final excitation, combi...
In this thesis I discuss work that has been carried out on the dynamics of a Bose Einstein condensat...
We describe a proof-of-principle experiment on a fully permanent magnet atom chip. We study ultracol...