研究目的
To design and test a quantum router that enables the transmission of quantum teleported photons from any source to any destination, facilitating the realization of a quantum Internet.
研究成果
The addition of a novel quantum router to existing CW optics, quantum teleportation, and quantum repeaters can be used to transfer quantum state from any source to any destination over, in principle, unlimited distances. The design defines a simple interface between the Digital and Quantum Networks and should be applicable to any quantum teleportation and repeater implementation.
研究不足
The practicality of the quantum router depends on the creation and distribution of entangled photons at will and high frequencies, effective mechanisms for qubit storage, and easy implementations of quantum teleportation.
1:Experimental Design and Method Selection:
The design is based on quantum teleportation and entangled pair management. The prototype was validated using a quantum simulator.
2:Sample Selection and Data Sources:
The study utilizes quantum simulators and existing quantum teleportation protocols.
3:List of Experimental Equipment and Materials:
JavaScript quantum computer simulator (http://davidbkemp.github.io/jsqubits/) and node.js for digital network functions.
4:Experimental Procedures and Operational Workflow:
The quantum network protocol was verified using a simulator, with digital network functions and the interface to the quantum network written in JavaScript and node.js.
5:Data Analysis Methods:
The study focuses on the functionality and verification of the quantum router design through simulation.
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