Experimental Satellite Quantum Communications.
نویسندگان
چکیده
Quantum communication (QC), namely, the faithful transmission of generic quantum states, is a key ingredient of quantum information science. Here we demonstrate QC with polarization encoding from space to ground by exploiting satellite corner cube retroreflectors as quantum transmitters in orbit and the Matera Laser Ranging Observatory of the Italian Space Agency in Matera, Italy, as a quantum receiver. The quantum bit error ratio (QBER) has been kept steadily low to a level suitable for several quantum information protocols, as the violation of Bell inequalities or quantum key distribution (QKD). Indeed, by taking data from different satellites, we demonstrate an average value of QBER=4.6% for a total link duration of 85 s. The mean photon number per pulse μ_{sat} leaving the satellites was estimated to be of the order of one. In addition, we propose a fully operational satellite QKD system by exploiting our communication scheme with orbiting retroreflectors equipped with a modulator, a very compact payload. Our scheme paves the way toward the implementation of a QC worldwide network leveraging existing receivers.
منابع مشابه
Practical quantum cryptography for secure free-space communications
Quantum Cryptography is an emerging technology in which two parties may simultaneously generate shared, secret cryptographic key material using the transmission of quantum states of light. The security of these transmissions is based on the inviolability of the laws of quantum mechanics and information – theoretically secure postprocessing methods. An adversary can neither successfully tap the ...
متن کاملSatellite communication over quantum channel
Quantum computing offers revolutionary solutions in the field of computer sciences, applying the opportunities of quantum physics which are incomparably richer than classical physics. Although quantum computers are going to be the tools of the far future, there are already a few algorithms to solve problems which are very difficult to handle with traditional computers. Perhaps the easiest examp...
متن کاملUsing Redundancy-Free Quantum Channels for Improving the Satellite Communication
The quantum based systems could be the next steps in improving the satellite communication. The actual implementation of quantum cryptography systems would be invaluable, allowing for the first time the practical possibility of one-time-pad-encrypted, undecipherable communication, which will offer an essentially new degree of security in future satellite communications. They offer secure key di...
متن کاملBeating the channel capacity limit for linear photonic superdense coding
Dense coding is arguably the protocol that launched the field of quantum communication [1]. Today, however, more than a decade after its initial experimental realization [2], the channel capacity remains fundamentally limited as conceived for photons using linear elements. Bob can only send to Alice three of four potential messages due to the impossibility of performing the deterministic discri...
متن کاملResolving Dark Pulses from Photon Pulses in NbN Superconducting Single-Photon Detectors
LLE Review, Volume 115 153 Introduction Fast and reliable single-photon detectors (SPD’s) have become a highly sought after technology in recent years.1 Some of the most interesting applications for SPD’s, which include quantum communications and quantum key distribution,2 as well as satellite communications, require devices that can successfully operate at telecommunication wavelengths, namely...
متن کاملUsing quantum computing algorithms in future satellite communication
Since the beginning of long-distance communication, there has been a need to connect telecommunications networks of a country to another. Quantum computing offers revolutionary solutions in the field of computer science, applying the opportunities of quantum physics which are incomparably richer than those of classical physics. Although quantum computers are going to be the tools of the distant...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
عنوان ژورنال:
- Physical review letters
دوره 115 4 شماره
صفحات -
تاریخ انتشار 2015