Quantum Brain
← Back to papers

Slow and stored light via electromagnetically induced transparency using a Λ -type superconducting artificial atom

Kai-I Chu, Xiao-Cheng Lu, K-H Chiang, Yen-Hsiang Lin, Chii-Dong Chen, Ite A. Yu, Wen-Te Liao, Yung-Fu Chen·June 7, 2024·DOI: 10.1103/physrevresearch.7.l012015
Physics

AI Breakdown

Get a structured breakdown of this paper — what it's about, the core idea, and key takeaways for the field.

Abstract

Recent progresses in Josephson-junction-based superconducting circuits have propelled quantum information processing forward. However, the lack of a metastable state in most superconducting artificial atoms hinders the development of photonic quantum memory in this platform. Here we use a single superconducting qubit-resonator system to realize a desired Λ-type artificial atom, and to demonstrate slow light with a group velocity of 3.6 km/s and the microwave storage with a memory time extending to several hundred nanoseconds via electromagnetically induced transparency. Our results highlight the potential of achieving microwave quantum memory, promising substantial advancements in quantum information processing within superconducting circuits. Published by the American Physical Society 2025

Related Research

Quantum Intelligence

Ask about quantum research, companies, or market developments.