Realistic Threat Models for Fiber and Free-Space Continuous-Variable Quantum Key Distribution
arXiv:2510.06971 · doi:10.1103/hq32-x7gt
Abstract
Future global quantum communication networks, or quantum Internet, will realize high-rate secure communication and entanglement distribution for large-scale users over long distances. Continuous variable (CV) quantum key distribution (QKD) provides a powerful setting for secure quantum communications, thanks to the use of room-temperature off-the-shelf optical devices and the potential to reach high rates. However, the achievable performance of CV-QKD protocols is fundamentally limited by the fact that they appear to be fragile to both loss and noise. In this study, we provide a general framework for analyzing the composable finite-size security of CV-QKD with Gaussian-modulated coherent-state protocol (GMCS) under various levels of trust for the loss and noise experienced by the users of the protocol. Our work is comprehensive of several practical scenarios, encompassing both active and passive eavesdropping configurations, with both wired (i.e., fiber-based) and wireless (i.e., free-space and satellite-based) quantum communication channels. Our numerical results evaluate the robustness of the GMCS protocol under varying levels of trust and demonstrate that it is difficult for a practical protocol to remain robust against untrusted loss at the transmitter. In the wireless case, we analyze a scenario with a sun-synchronous satellite, showing that its key distribution rate, even with the worst level of trust, can outperform a ground chain of ideal quantum repeaters. Our results indicate that, when it comes to engineering and optimizing quantum-safe networks, it is essential to mitigate the shortcomings caused by critical trade-offs between rate performance, trust level, system noise, and communication distance.
REVTeX, 22 pages, 13 figures
References in corpus (50)
- Gaussian Quantum Information
- Advances in Quantum Cryptography
- Satellite-to-ground quantum key distribution
- Secure quantum key distribution with realistic devices
- Continuous variable quantum cryptography using coherent states
- General Benchmarks for Quantum Repeaters
- Fundamental Limits of Repeaterless Quantum Communications
- Distillation of secret key and entanglement from quantum states
- Satellite-relayed intercontinental quantum network
- Unconditional optimality of Gaussian attacks against continuous-variable QKD
- Quantum repeaters: From quantum networks to the quantum internet
- Optimality of Gaussian Attacks in Continuous Variable Quantum Cryptography
- High-rate quantum cryptography in untrusted networks
- Unconditional security proof of long-distance continuous-variable quantum key distribution with discrete modulation
- Security in Quantum Cryptography
- A de Finetti representation theorem for infinite dimensional quantum systems and applications to quantum cryptography
- Continuous-Variable Quantum Key Distribution with Gaussian Modulation -- The Theory of Practical Implementations
- Quantum key distribution and 1 Gbit/s data encryption over a single fibre
- Leftover Hashing Against Quantum Side Information
- End-to-end capacities of a quantum communication network
- Coexistence of continuous variable QKD with intense DWDM classical channels
- Characterization of Collective Gaussian Attacks and Security of Coherent-State Quantum Cryptography
- Generating the local oscillator "locally" in continuous-variable quantum key distribution based on coherent detection
- Full daylight quantum-key-distribution at 1550 nm enabled by integrated silicon photonics
- Limits and Security of Free-Space Quantum Communications
- Practical continuous-variable quantum key distribution with composable security
- Satellite Quantum Communications: Fundamental Bounds and Practical Security
- Quantum Cryptography Approaching the Classical Limit
- Risk analysis of Trojan-horse attacks on practical quantum key distribution systems
- Microsatellite-based real-time quantum key distribution
- Continuous-Variable Quantum Key Distribution using Thermal States
- Self-coherent phase reference sharing for continuous-variable quantum key distribution
- Entanglement of Gaussian states and the applicability to quantum key distribution over fading channels
- Composability in quantum cryptography
- Trusted Noise in Continuous-Variable Quantum Key Distribution: a Threat and a Defense
- Spacetime effects on satellite-based quantum communications
- Composable security for continuous variable quantum key distribution: Trust levels and practical key rates in wired and wireless networks
- Machine learning aided carrier recovery in continuous-variable quantum key distribution
- Fading channel estimation for free-space continuous-variable secure quantum communication
- Trusted detector noise analysis for discrete modulation schemes of continuous-variable quantum key distribution
- Composably secure data processing for Gaussian-modulated continuous variable quantum key distribution
- Improved composable key rates for CV-QKD
- Device-Independent Quantum Cryptography for Continuous Variables
- Analytical Methods for High-Rate Global Quantum Networks
- Violations of Bell's inequality for Gaussian states with homodyne detection and nonlinear interactions
- Satellite-Based Quantum Key Distribution in the Presence of Bypass Channels
- Continuous-variable quantum key distribution with noisy squeezed states
- Maximum tolerable excess noise in continuous-variable quantum key distribution and improved lower bound on two-way capacities
- An Overview of CV-MDI-QKD
- Continuous-variable quantum key distribution: security analysis with trusted hardware noise against general attacks