Entangled Microwave Photons Generation using Cryogenic Low Noise Amplifier (Transistor Nonlinearity Effects)
Ahmad Salmanogli

TL;DR
This paper proposes a novel method for generating entangled microwave photons using a cryogenic low noise amplifier that exploits transistor nonlinearity effects, achieving low noise and efficient entanglement.
Contribution
It introduces a unique approach combining cryogenic amplification and transistor third-order nonlinearity to generate entangled microwave photons.
Findings
Entangled microwave photons can be generated using the designed amplifier.
The amplifier achieves ultra-low noise figures, enhancing entanglement probability.
Simulation confirms the feasibility of the proposed entanglement generation method.
Abstract
This article mainly focuses on one of the important phenomena in the quantum realm called entanglement. It is clear that entanglement created due to the nonlinearity property has been arisen by some different methods. This study in contrast uses a unique approach in which a cryogenic low noise amplifier is designed and using the transistor nonlinearity effect (third-order nonlinearity) entangled microwave photons are created. It is supposed that the low noise amplifier contains two coupled oscillators resonating with different frequencies. The mentioned oscillators are coupled to each other through the gate-drain capacitor and nonlinear transconductance as an important factor by which the entangled microwave photons are strongly manipulated. For entanglement analysis, the Hamiltonian of the system is initially derived, then using the dynamic equation of motion of the designed amplifier…
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Taxonomy
TopicsQuantum Information and Cryptography · Quantum and electron transport phenomena
