Focusing on the transient regime, we explore atomic two-photon spectroscopy with self-aligned homodyne interferometry in a $\Lambda$-system with large optical depth. The two light sources at the origin of the interference are the single-photon transient transmission of the probe, and the slow light of the electromagnetically induced transparency. By switching off the probe laser abruptly (flash effect), the transient transmission signal is reinforced by cooperativity, showing enhanced sensitivity to the two-photon frequency detuning. If the probe laser is periodically switched on and off, the amplitude of the transmission signal varies and remains large even for high modulation frequency. This technique has potential applications in sensin...
One of the dominant systematic effects that shift resonance lines in high-precision measurements of ...
We analyze both experimentally and theoretically the phase shift of a fixed coupling laser field in ...
The interaction of a sequence of two identical ultrashort laser pulses with an atomic system result...
This thesis demonstrates the experimental implementation of a homodyne interference technique to det...
A new heterodyne technique is presented for the simultaneous measurement of dispersion and absorptio...
We report the observation of coherent two-photon free-induction decay (FID) in a three-level Λ syste...
Heterodyne interferometry uses beats produced by superposing two light waves with different frequenc...
Using three phase-locked lasers, we have observed in a three-level system the phase shift of the fre...
International audienceThe purpose of this paper is to propose quantum filters for a two-level atom d...
International audienceThe interaction of a sequence of two identical ultrashort laser pulses with an...
We experimentally observed a two-photon interference between a squeezed vacuum state from an optical...
We investigate the excitation of the 5D5/2 level in Rb atoms using counter-propagating laser beams, ...
Homodyne detection is the most effective detection scheme employed in quantum optics to characterize...
We present an experimental implementation of spectral properties engineering on biphoton light, emit...
One of the dominant systematic effects that shift resonance lines in high-precision measurements of ...
We analyze both experimentally and theoretically the phase shift of a fixed coupling laser field in ...
The interaction of a sequence of two identical ultrashort laser pulses with an atomic system result...
This thesis demonstrates the experimental implementation of a homodyne interference technique to det...
A new heterodyne technique is presented for the simultaneous measurement of dispersion and absorptio...
We report the observation of coherent two-photon free-induction decay (FID) in a three-level Λ syste...
Heterodyne interferometry uses beats produced by superposing two light waves with different frequenc...
Using three phase-locked lasers, we have observed in a three-level system the phase shift of the fre...
International audienceThe purpose of this paper is to propose quantum filters for a two-level atom d...
International audienceThe interaction of a sequence of two identical ultrashort laser pulses with an...
We experimentally observed a two-photon interference between a squeezed vacuum state from an optical...
We investigate the excitation of the 5D5/2 level in Rb atoms using counter-propagating laser beams, ...
Homodyne detection is the most effective detection scheme employed in quantum optics to characterize...
We present an experimental implementation of spectral properties engineering on biphoton light, emit...
One of the dominant systematic effects that shift resonance lines in high-precision measurements of ...
We analyze both experimentally and theoretically the phase shift of a fixed coupling laser field in ...
The interaction of a sequence of two identical ultrashort laser pulses with an atomic system result...