Spin rephasing helps quantum memories store single-photon states longer for future networks
Scientists have developed a technique called spin rephasing to improve quantum memory, allowing single-photon states to be stored longer. This advancement could enhance future quantum networks by enabling more efficient and reliable exchange of qubits, which can represent both 0 and 1 simultaneously and become entangled, offering advantages not possible with classical bits.
Scientists have developed a technique called spin rephasing to improve quantum memory, allowing single-photon states to be stored longer. This advancement could enhance future quantum networks by enabling more efficient and reliable exchange of qubits, which can represent both 0 and 1 simultaneously and become entangled, offering advantages not possible with classical bits.
Sources
- Phys.org — Spin rephasing helps quantum memories store single-photon states longer for future networks
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