Continuous-Variable Quantum Key Distribution over 15 km Multi-Core Fiber
- URL: http://arxiv.org/abs/2201.03392v1
- Date: Mon, 10 Jan 2022 15:18:21 GMT
- Title: Continuous-Variable Quantum Key Distribution over 15 km Multi-Core Fiber
- Authors: S. Sarmiento, S. Etcheverry, J. Aldama, I. H. L\'Opez, L. T. Vidarte,
G. B. Xavier, D. A. Nolan, J. S. Stone, M. J. Li, D. Loeber, and V. Pruneri
- Abstract summary: Continuous-variable quantum key distribution (CV-QKD) is a technology that can potentially provide information-theoretic security to cryptographic systems.
CV-QKD is highly attractive thanks to high secret key rate generation over metropolitan distances and integration with the current classical communication networks.
- Score: 0.0
- License: http://arxiv.org/licenses/nonexclusive-distrib/1.0/
- Abstract: The secure transfer of information is critical for the ever-increasing
demands of the digital world. Continuous-variable quantum key distribution
(CV-QKD) is a technology that can potentially provide information-theoretic
security to cryptographic systems. CV-QKD is highly attractive thanks to high
secret key rate generation over metropolitan distances and integration with the
current classical communication networks. Here we demonstrate CV-QKD across a
15 km multi-core fiber (MCF) where we take advantage of one core to remotely
frequency lock Bob's local oscillator with Alice's transmitter. We also
demonstrate the capacity of the MCF to boost the secret key rate by
parallelizing CV-QKD across multiple cores. Our results point out that MCFs are
promising for metropolitan deployment of QKD systems.
Related papers
- Experimental composable key distribution using discrete-modulated continuous variable quantum cryptography [1.9464379888286716]
We present the first experimental demonstration of a four-state DM CVQKD system, successfully generating composable finite-size keys.
This accomplishment is enabled by using an advanced security proof.
Results mark a significant step toward the large-scale deployment of practical, high-performance, cost-effective, and highly secure quantum key distribution networks.
arXiv Detail & Related papers (2024-10-17T16:05:08Z) - Metropolitan quantum key distribution using a GaN-based room-temperature telecommunication single-photon source [54.32714639668751]
Single-photon sources (SPS) hold the potential to enhance the performance of quantum key distribution (QKD)
We have successfully demonstrated QKD using a room-temperature SPS at telecommunication wavelength.
arXiv Detail & Related papers (2024-09-27T07:35:51Z) - The Evolution of Quantum Secure Direct Communication: On the Road to the
Qinternet [49.8449750761258]
Quantum secure direct communication (QSDC) is provably secure and overcomes the threat of quantum computing.
We will detail the associated point-to-point communication protocols and show how information is protected and transmitted.
arXiv Detail & Related papers (2023-11-23T12:40:47Z) - Practical quantum secure direct communication with squeezed states [55.41644538483948]
We report the first table-top experimental demonstration of a CV-QSDC system and assess its security.
This realization paves the way into future threat-less quantum metropolitan networks, compatible with coexisting advanced wavelength division multiplexing (WDM) systems.
arXiv Detail & Related papers (2023-06-25T19:23:42Z) - Continuous-Variable Quantum Key Distribution at 10 GBaud using an
Integrated Photonic-Electronic Receiver [0.5417521241272645]
Photonic and electronic integrated circuits that can be produced in large volumes at low cost hold the key to large-scale deployment of next-generation QKD systems.
We present a continuous-variable (CV) QKD system using an integrated photonic-electronic receiver.
The QKD system operates at a classical telecom symbol rate of 10 GBaud, generating high secret key rates exceeding 0.7 Gb/s over a distance of 5 km and 0.3 Gb/s over a distance of 10 km.
arXiv Detail & Related papers (2023-05-31T08:17:09Z) - Long-distance continuous-variable quantum key distribution over 100 km
fiber with local local oscillator [0.6524460254566905]
Quantum key distribution (QKD) enables two remote parties to share encryption keys with security based on the laws of physics.
Here, we report a long-distance CV-QKD experiment with a locally generated local oscillator over a 100 km fiber channel with a total loss of 15.4 dB.
This record-breaking distance is achieved by controlling the phase-noise-induced excess noise through a machine-learning framework for carrier recovery and optimizing the modulation variance.
arXiv Detail & Related papers (2023-05-14T13:34:20Z) - High-rate continuous-variable measurement device-independent quantum key distribution with finite-size security [0.0]
Continuous-variable (CV) measurement-device-independent (MDI) QKD is a promising candidate for creating various quantum network topologies.
Here, we report the first experimental validation of a CV MDI-QKD system, achieving a secure key rate of 2.6 Mbit/s against collective attacks.
arXiv Detail & Related papers (2023-03-02T22:20:29Z) - Quantum Key Distribution Using a Quantum Emitter in Hexagonal Boron
Nitride [48.97025221755422]
We demonstrate a room temperature, discrete-variable quantum key distribution system using a bright single photon source in hexagonal-boron nitride.
We have generated keys with one million bits length, and demonstrated a secret key of approximately 70,000 bits, at a quantum bit error rate of 6%.
Our work demonstrates the first proof of concept finite-key BB84 QKD system realised with hBN defects.
arXiv Detail & Related papers (2023-02-13T09:38:51Z) - Composable security for continuous variable quantum key distribution:
Trust levels and practical key rates in wired and wireless networks [0.0]
Continuous variable (CV) quantum key distribution (QKD) provides a powerful setting for secure quantum communications.
We study the composable finite-size security of CV-QKD with Gaussian-modulated coherent-state protocols.
We show that high key rates are achievable for short-range optical wireless (LiFi) in secure quantum networks with both fixed and mobile devices.
arXiv Detail & Related papers (2022-03-01T19:04:43Z) - Towards fully-fledged quantum and classical communication over deployed
fiber with up-conversion module [47.187609203210705]
We propose and demonstrate a new method, based on up-conversion assisted receiver, for co-propagating classical light and QKD signals.
Our proposal exhibits higher tolerance for noise in comparison to the standard receiver, thus enabling the distribution of secret keys in the condition of 4 dB-higher classical power.
arXiv Detail & Related papers (2021-06-09T13:52:27Z) - Path-encoded high-dimensional quantum communication over a 2 km
multicore fiber [50.591267188664666]
We demonstrate the reliable transmission over a 2 km long multicore fiber of path-encoded high-dimensional quantum states.
A stable interferometric detection is guaranteed, allowing for low error rates and the generation of 6.3 Mbit/s of secret key rate.
arXiv Detail & Related papers (2021-03-10T11:02:45Z)
This list is automatically generated from the titles and abstracts of the papers in this site.
This site does not guarantee the quality of this site (including all information) and is not responsible for any consequences.