【摘 要】
:
The interaction between a single atom and a single photon is essential for various applications in quantum information processing.
【机 构】
:
Centre for Quantum Technologies,National University of Singapore,3 Science Drive 2,Singapore,Singapo
【出 处】
:
2015年国际激光物理研讨会(LPHYS`15)
论文部分内容阅读
The interaction between a single atom and a single photon is essential for various applications in quantum information processing.
其他文献
I will talk about our recent work on the virial expansion for a unitary Fermi gas across an Efimov threshold.This work reveals the importance of the three-body parameter even without an Efimov effect.
Core-shell colloidal semiconductor nanocrystals are very efficient single photon emitters at room temperature [1].This is due to the strong confinement of the charge carriers in these nanostructures t
Bose-Einstein condensation,theoretically known to appear at ultralow temperatures since the 1920s,was achieved in the laboratory only 20 years ago,in dilute bosonic gases at temperatures close to abso
Two-photon states have always been of a key interest for quantum optics community.They have been actively exploited in a number of areas spanning from fundamental tasks such as test of fundamentals of
It is generally assumed that a condensate of paired fermions at equilibrium is characterized by a macroscopic wavefunction with a well-defined,immutable phase.
Novel quantum technology becomes mature when it can successfully be implemented in compact,integrated and easy-to-use devices.
Quantum Communications on planetary scale envisage applications of quantum information protocols as well as of fundamental tests in Quantum Mechanics.
We theoretically studied a triple-∧ system comprising three pairs of coupling-probe fields.Three probe fields were phase-dependently switched with a switching depth above 80 %,at which the group-veloc
Quantum sources,in particular,entangled photon sources,are an indispensible resource for quantum communication,computing,and metrology.
Trapped Rydberg ions are a novel approach for quantum information processing [1,2].This idea joins the advanced quantum control of trapped ions with the strong dipolar interaction between Rydberg atom