It is known that photon pairs generated from pulse-pumped spontaneous parametric processes can be described by independent temporal modes and form a multitemporal mode entangled state. However, the exact form of the temporal modes is not known even though the joint spectral intensity of photon pairs can be measured by the method of stimulated emission tomography. In this paper, we describe a feedback-iteration method which, combined with the stimulated emission method, can give rise to the exact forms of the independent temporal modes for the temporally entangled photon pairs
By investigating the intensity correlation function, we study the spectral/temporal mode properties ...
It is demonstrated that enhanced mode suppression in stimulated photon echo experiments can be obtai...
Mode matching plays an important role in measuring the continuous variable entanglement. For the sig...
Field-orthogonal temporal mode analysis of optical fields has recently been developed for a new fram...
The ability to manipulate and measure the time-frequency structure of quantum light is useful for in...
Spontaneous parametric processes pumped transversely with short pulses are studied under a unified f...
Cold atom based narrowband entangled photon sources are important for efficient atom - photon intera...
The exact role of entanglement in various quantum metrology schemes is still subject to debates. Thi...
We present a new method for the spectral characterization of pulsed twin beam sources in the high ga...
To fully utilize the energy-time degree of freedom of photons for optical quantum-information proces...
The equations that govern the temporal evolution of two photons in the Schrödinger picture are deriv...
Using stimulated emission tomography, we characterize an entangled photon-pair source in the energy ...
We identify a relation between the number of photon pairs generated by parametric fluorescence, thro...
We have developed the technique of two-photon joint temporal density measurements for temporal state...
To fully utilize the energy-time degree of freedom of photons for optical quantum-information proces...
By investigating the intensity correlation function, we study the spectral/temporal mode properties ...
It is demonstrated that enhanced mode suppression in stimulated photon echo experiments can be obtai...
Mode matching plays an important role in measuring the continuous variable entanglement. For the sig...
Field-orthogonal temporal mode analysis of optical fields has recently been developed for a new fram...
The ability to manipulate and measure the time-frequency structure of quantum light is useful for in...
Spontaneous parametric processes pumped transversely with short pulses are studied under a unified f...
Cold atom based narrowband entangled photon sources are important for efficient atom - photon intera...
The exact role of entanglement in various quantum metrology schemes is still subject to debates. Thi...
We present a new method for the spectral characterization of pulsed twin beam sources in the high ga...
To fully utilize the energy-time degree of freedom of photons for optical quantum-information proces...
The equations that govern the temporal evolution of two photons in the Schrödinger picture are deriv...
Using stimulated emission tomography, we characterize an entangled photon-pair source in the energy ...
We identify a relation between the number of photon pairs generated by parametric fluorescence, thro...
We have developed the technique of two-photon joint temporal density measurements for temporal state...
To fully utilize the energy-time degree of freedom of photons for optical quantum-information proces...
By investigating the intensity correlation function, we study the spectral/temporal mode properties ...
It is demonstrated that enhanced mode suppression in stimulated photon echo experiments can be obtai...
Mode matching plays an important role in measuring the continuous variable entanglement. For the sig...