Measurement-based generation of shaped single photons and coherent state superpositions in optical cavities
arXiv:1604.03680 · doi:10.1103/PhysRevA.95.013828
Abstract
We propose related schemes to generate arbitrarily shaped single photons, i.e. photons with an arbitrary temporal profile, and coherent state superpositions using simple optical elements. The first system consists of two coupled cavities, a memory cavity and a shutter cavity, containing a second order optical nonlinearity and electro-optic modulator (EOM) respectively. Photodetection events of the shutter cavity output herald preparation of a single photon in the memory cavity, which may be stored by immediately changing the optical length of the shutter cavity with the EOM after detection. On-demand readout of the photon, with arbitrary shaping, can be achieved through modulation of the EOM. The second scheme consists of a memory cavity with two outputs which are interfered, phase shifted, and measured. States that closely approximate a coherent state superposition can be produced through postselection for sequences of detection events, with more photon detection events leading to a larger superposition. We furthermore demonstrate that `No-Knowledge Feedback' can be easily implemented in this system and used to preserve the superposition state, as well as provide an extra control mechanism for state generation.
9 pages, 6 figures
References in corpus (15)
- Quantum cryptography: Public key distribution and coin tossing
- QuTiP 2: A Python framework for the dynamics of open quantum systems
- Near optimal single photon sources in the solid state
- Generation of a superposition of odd photon number states for quantum information networks
- Reconstruction of non-classical cavity field states with snapshots of their decoherence
- Photon temporal modes: a complete framework for quantum information science
- Generation of large-amplitude coherent-state superposition via ancilla-assisted photon-subtraction
- Long-Distance Entanglement Distribution with Single-Photon Sources
- XMDS2: Fast, scalable simulation of coupled stochastic partial differential equations
- Optical synthesis of large-amplitude squeezed coherent-state superpositions with minimal resources
- Optimal photons for quantum information processing
- Cavity driven by a single photon: conditional dynamics and non-linear phase shift
- Observing different quantum trajectories in cavity QED
- Free space interference experiments with single photons and single ions
- Photon subtraction from traveling fields - recent experimental demonstrations