Consideration of success probability and performance optimization in non-Gaussian continuous variable quantum teleportation
arXiv:2206.06806 · doi:10.1103/PhysRevA.107.012418
Abstract
Non-Gaussian operations have been shown to enhance the fidelity of continuous variable quantum teleportation. However, a disadvantage of these non-Gaussian operations is that they are probabilistic in nature. In this article, we study the trade-off between teleportation fidelity and success probability for optimal performance of the teleportation protocol, which to the best of our knowledge, has never been studied before. To this end, we first derive a unified expression for the Wigner characteristic function describing three non-Gaussian states, photon subtracted, photon added, and photon catalyzed two-mode squeezed vacuum states. We then utilize it to obtain the fidelity of teleportation for input coherent and squeezed vacuum states using the aforementioned non-Gaussian resource states. We optimize the product of the relative enhancement in fidelity and the probability of state preparation by tuning the transmissivity of the beam splitters involved in implementing non-Gaussian operations. This leads to a scenario that can be effectively implemented in a lab to enhance fidelity. It turns out that among all the considered non-Gaussian resource states, the symmetric one-photon subtracted TMSV state is the most advantageous. We provide the associated optimal squeezing and beam splitter transmissivity values for the considered non-Gaussian resource states, which will be of significant interest to the experimental community. We also consider the effect of imperfect photon detectors on teleportation fidelity. Further, we expect the derived Wigner characteristic function to be useful in state characterization and other quantum information processing protocols.
This is the second article in a publication series written in the celebration of the completion of 15 years of IISER Mohali
References in corpus (35)
- Quantum information with continuous variables
- Gaussian Quantum Information
- Detecting Single Infrared Photons with 93% System Efficiency
- Detection of 15 dB Squeezed States of Light and their Application for the Absolute Calibration of Photoelectric Quantum Efficiency
- Continuous variable quantum information: Gaussian states and beyond
- Entanglement in continuous variable systems: Recent advances and current perspectives
- Quantum optics in the phase space - A tutorial on Gaussian states
- Photon number resolution using a time-multiplexed single-photon detector
- Teleportation improvement by inconclusive photon subtraction
- Entanglement evaluation of non-Gaussian states generated by photon subtraction from squeezed states
- Quantum homodyne tomography of a two-photon Fock state
- No-cloning theorem and teleportation criteria for quantum continuous variables
- Quantifying the non-Gaussian character of a quantum state by quantum relative entropy
- Continuous variable quantum teleportation with non-Gaussian resources
- Single-photon detectors combining ultra-high efficiency, detection-rates, and timing resolution
- Quantum versus Classical Domains for Teleportation with Continuous Variables
- Continuous-variable quantum key distribution with non-Gaussian quantum catalysis
- Experimental generation of multi-photon Fock states
- Generation of optical Schrödinger's cat states by generalized photon subtraction
- Continuous-variable quantum teleportation with non-Gaussian entangled states generated via multiple-photon subtraction and addition
- Continuous-variable teleportation in the characteristic-function description
- Continuous-variable measurement-device-independent quantum key distribution with photon subtraction
- Precision measurements with photon-subtracted or photon-added Gaussian states
- Simulating realistic non-Gaussian state preparation
- Strategies for enhancing quantum entanglement by local photon subtraction
- Enhancing quantum entanglement and quantum teleportation for two-mode squeezed vacuum state by local quantum-optical catalysis
- On the scalability of parametric down-conversion for generating higher-order Fock states
- Effect of noise and enhancement of nonlocality in on/off photodetection
- Realistic non-Gaussian operations scheme in parity detection based Mach-Zehnder quantum interferometry
- Coherence assisted non-Gaussian measurement device independent quantum key distribution
- High production rate of single-photon and two-photon Fock states for quantum state engineering
- Continuous-variable entanglement distillation by cascaded photon replacement
- Equivalent efficiency of a simulated photon-number detector
- Multiphoton Bell-type inequality: a tool to unearth nonlocality of continuous variable quantum optical systems
- Optimal entanglement enhancing via conditional measurements
Cited by in corpus (12)
- Enhanced phase estimation in parity detection based Mach-Zehnder interferometer using non-Gaussian two-mode squeezed thermal input state
- Parity-detection-based Mach-Zehnder interferometry with coherent and non-Gaussian squeezed vacuum states as inputs
- Continuous variable quantum teleportation using photon subtracted and photon added two mode squeezed coherent state
- Continuous variable quantum teleportation in a dissipative environment: Comparison of non-Gaussian operations before and after noisy channel
- Performance optimization of continuous variable quantum teleportation with generalized photon-varying non-Gaussian operations
- Advantage of probabilistic non-Gaussian operations in the distillation of single mode squeezed vacuum state
- Nonclassical resource for continuous variable telecloning with non-Gaussian advantage
- Non-Gaussian two mode squeezed thermal states in continuous variable quantum teleportation
- Re-examination of the role of displacement and photon catalysis operation in continuous variable measurement device-independent quantum key distribution
- No real advantage of photon subtraction and displacement in continuous variable measurement device independent quantum key distribution
- Analyzing performance of -deformed displaced Fock state in continuous-variable quantum teleportation
- Dynamic Routing in Space-Ground Integrated Quantum Networks