We present a Ramsey-type atom interferometer operating with an optically trapped sample of 10(6) Bose-condensed Rb-87 atoms. We investigate this interferometer experimentally and theoretically with an eye to the construction of future high precision atomic sensors. Our results indicate that, with further experimental refinements, it will be possible to produce and measure the output of a sub-shot-noise-limited, large atom number BEC-based interferometer. The optical trap allows us to couple the vertical bar F = 1, m(F) = 0 > -> vertical bar F = 2, m(F) = 0 > clock states using a single photon 6.8 GHz microwave transition, while state selective readout is achieved with absorption imaging. We analyse the process of absorption imaging and show...
Atom interferometry is proving to be one of the most precise technique in gravimetry and gravity gra...
Light-pulse atom interferometers have been used as quantum inertial sensors and for precision tests ...
Atom interferometers are powerful tools for both measurements in fundamental physics and inertial se...
We present a Ramsey-type atom interferometer operating with an optically trapped sample of 106 Bose-...
We present a Ramsey-type atom interferometer operating with an optically trapped sample of 106 Bose-...
In our original paper (Altin et al 2011 New J. Phys. 13 065020), we presented the results from a Ram...
This thesis describes recent experiments conducted on a Bose-Einstein condensate in an optical waveg...
In our original paper (Altin et al 2011 New J. Phys. 13 065020), we presented the results from a Ram...
The subject of this thesis is the use of BECs for atom interferometry. The standard way atom interfe...
International audienceSummary form only given. Atom chips [1] have shown to be very successful for t...
Interferometry with trapped atomic Bose-Einstein condensates (BECs) requires the development of tech...
Matter wave interferometry offers a novel approach for high precision measurements, such as the dete...
This thesis details the experimental investigation of a new type of atom interferometer using rubidi...
Interferometry with trapped atomic Bose-Einstein condensates (BECs) requires the development of tech...
We investigate theoretically and experimentally a nondestructive interferometric measurement of the ...
Atom interferometry is proving to be one of the most precise technique in gravimetry and gravity gra...
Light-pulse atom interferometers have been used as quantum inertial sensors and for precision tests ...
Atom interferometers are powerful tools for both measurements in fundamental physics and inertial se...
We present a Ramsey-type atom interferometer operating with an optically trapped sample of 106 Bose-...
We present a Ramsey-type atom interferometer operating with an optically trapped sample of 106 Bose-...
In our original paper (Altin et al 2011 New J. Phys. 13 065020), we presented the results from a Ram...
This thesis describes recent experiments conducted on a Bose-Einstein condensate in an optical waveg...
In our original paper (Altin et al 2011 New J. Phys. 13 065020), we presented the results from a Ram...
The subject of this thesis is the use of BECs for atom interferometry. The standard way atom interfe...
International audienceSummary form only given. Atom chips [1] have shown to be very successful for t...
Interferometry with trapped atomic Bose-Einstein condensates (BECs) requires the development of tech...
Matter wave interferometry offers a novel approach for high precision measurements, such as the dete...
This thesis details the experimental investigation of a new type of atom interferometer using rubidi...
Interferometry with trapped atomic Bose-Einstein condensates (BECs) requires the development of tech...
We investigate theoretically and experimentally a nondestructive interferometric measurement of the ...
Atom interferometry is proving to be one of the most precise technique in gravimetry and gravity gra...
Light-pulse atom interferometers have been used as quantum inertial sensors and for precision tests ...
Atom interferometers are powerful tools for both measurements in fundamental physics and inertial se...