The effective and safe communication of information using quantum systems is one of the important facets of ongoing Quantum technology. In the quantum information theory, a quantum channel is used which is based on the phenomena of entanglement and superposition. The entangled pairs retain a non-local correlation between them making them useful as quantum channel. The information transfer involves key distribution scheme in which data is encoded and sent through public channel. A private key is shared amongst the two parties using which they can retrieve the information. The channel cannot be purely isolated and noise free. So, there occurs a change in the encoded qubits which needs to be corrected. In order to identify and mitigate the errors, the error correction codes are required. With the help of quantum computing on real quantum systems, the quantum phenomenon, quantum algorithms and correction codes can be designed. IBM offers its Quantum Information Science toolkit known as qiskit which is an open cloud based sdk. The advanced problems with classical computers with particular algorithms cannot be solved more efficiently and quickly, but it can be done with the help of quantum computers. The paper is about the design of error correction schemes on qiskit and their implementation on openly accessible quantum computers.
Error Correction, Information Theory, Quantum Channel, Qiskit.
Unique Paper ID: 1095
Publication Volume & Issue: VOLUME 3 , ISSUE 4
Page(s): 52-56