Digital terahertz communication with Rydberg-atom-based coherent photon conversion
Abstract
We experimentally demonstrate digital communications in the terahertz (THz) band using a rubidium vapor cell as a quantum receiver. We utilize amplitude modulation to encode digital information in THz photons, which are coherently upconverted to optical photons via a Rydberg six-wave-mixing process. We achieve a data transmission rate of up to 1.16 Mbit/s and a tunable bandwidth of up to 142 MHz near a 0.11 THz carrier. With reduced data rate and increased integration time per bit, we demonstrate weak-field THz transmission with a receiver sensitivity in the −130 dBm range. As a proof of principle, we perform an end-to-end transmission of digital color images in the THz band. Our work provides the possibility of THz communication at the single-photon level.
Article Details
Journal Info
Applied Physics Letters
American Institute of Physics
Authors (6)
Xiaoliang Zuo
State Key Laboratory of Precision Spectroscopy, Institute of Quantum Science and Precision Measurement, East China Normal University 1 , Shanghai 200062,
Qingbin Li
Beijing National Laboratory For Molecular Sciences Key Laboratory of Organic Solids Institute of Chemistry, Chinese Academy of Sciences Beijing China
Danyang Li
Haiteng Wu
State Key Laboratory of Precision Spectroscopy, Institute of Quantum Science and Precision Measurement, East China Normal University 1 , Shanghai 200062,
Jiteng Sheng
State Key Laboratory of Precision Spectroscopy, Institute of Quantum Science and Precision Measurement, East China Normal University 1 , Shanghai 200062,
Haibin Wu