storage stage
Selection basis: Two classical coupling fields have equal detunings during storage.
First-pass extracted concept
Workflow Stage Observations
Selection basis: Two classical coupling fields have equal detunings during storage.
Selection basis: Two classical coupling fields have opposite detunings during retrieval; the probe is retrieved with two optical components characterized by different time-dependent phases.
Higher fidelity: no
Evidence Snippets
Supporting Sources
Linked Claims
The beating-signal phenomenon involves coherent manipulation of two dark-state polaritons.
This interesting phenomenon involves in fact the coherent manipulation of two dark-state polaritons
In the described scheme, an incident quantum probe field is first transformed into two spin coherence wave-packets and then retrieved with two optical components characterized by different time-dependent phases.
A quantum probe field, incident upon such an atomic sample, is first transformed into two spin coherence wave-packets and then retrieved with two optical components characterized by different time-dependent phases.
The retrieved quantum probe field exhibits a series of intensity maxima and minima as beating signals due to alternating constructive and destructive interference.
Therefore the retrieved quantum probe field exhibits a series of maxima and minima (beating signals) in intensity due to the alternative constructive and destructive interference.
The phenomenon may be explored to achieve fast quantum limited measurement.
and may be explored to achieve the fast quantum limited measurement.
The paper proposes an efficient scheme for robust and controlled generation of beating signals in stationary atoms driven into the tripod configuration.
We propose an efficient scheme for the robust and controlled generation of beating signals in a sample of stationary atoms driven into the tripod configuration.