Room-Temperature Single-photon level Memory for Polarization States

被引:0
作者
Connor Kupchak
Thomas Mittiga
Bertus Jordaan
Mehdi Namazi
Christian Nölleke
Eden Figueroa
机构
[1] Stony Brook University,Department of Physics and Astronomy
来源
Scientific Reports | / 5卷
关键词
D O I
暂无
中图分类号
学科分类号
摘要
An optical quantum memory is a stationary device that is capable of storing and recreating photonic qubits with a higher fidelity than any classical device. Thus far, these two requirements have been fulfilled for polarization qubits in systems based on cold atoms and cryogenically cooled crystals. Here, we report a room-temperature memory capable of storing arbitrary polarization qubits with a signal-to-background ratio higher than 1 and an average fidelity surpassing the classical benchmark for weak laser pulses containing 1.6 photons on average, without taking into account non-unitary operation. Our results demonstrate that a common vapor cell can reach the low background noise levels necessary for polarization qubit storage using single-photon level light and propels atomic-vapor systems towards a level of functionality akin to other quantum information processing architectures.
引用
收藏
相关论文
共 57 条
[11]  
Monroe C(2011)Single-Photon-Level Quantum Memory at Room Temperature Phys. Rev. Lett. 107 053603-undefined
[12]  
Duan LM(2011)Unconditional room-temperature quantum memory Nature Physics 7 794-undefined
[13]  
Lukin MD(2014)Broadband single-photon-level memory in a hollow-core photonic crystal fibre Nature Photonics 8 287-undefined
[14]  
Cirac JI(2012)Electromagnetically induced transparency-based slow and stored light in warm atoms Laser and Photonics Reviews 6 333-undefined
[15]  
Zoller P(2010)Fabrication method for microscopic vapor cells for alkali atoms Opt. Lett. 35 1950-undefined
[16]  
Maurer PC(2006)Low-Light-Level Optical Interactions with Rubidium Vapor in a Photonic Band-Gap Fiber Phys. Rev. Lett. 97 023603-undefined
[17]  
Saeedi K(2009)Ultralow-Power Four-Wave Mixing with Rb in a Hollow-Core Photonic Band-Gap Fiber Phys. Rev. Lett. 103 043602-undefined
[18]  
Eisaman MD(2013)Phase modulation at the few-photon level for weak-nonlinearity-based quantum computing Nature Photonics 7 138-undefined
[19]  
Reim KF(2011)High efficiency coherent optical memory with warm rubidium vapour Nature Communications 2 174-undefined
[20]  
Hosseini M(2010)Towards high-speed optical quantum memories Nature Photonics 4 218-undefined