An experimental demonstration of long-haul public-channel key distribution using matched superlattice physical unclonable function pairs.

[1]  Mustafa Eroz,et al.  DVB‐S2 low density parity check codes with near Shannon limit performance , 2004, Int. J. Satell. Commun. Netw..

[2]  Bruce Schneier,et al.  Applied cryptography : protocols, algorithms, and source codein C , 1996 .

[3]  Jerker Björkqvist,et al.  Efficient GPU and CPU-based LDPC decoders for long codewords , 2012 .

[4]  Jun Muramatsu,et al.  Secure key distribution using correlated randomness in lasers driven by common random light. , 2012, Physical review letters.

[5]  I. Kanter,et al.  Fast physical random-number generation based on room-temperature chaotic oscillations in weakly coupled superlattices. , 2013, Physical review letters.

[6]  Wei Zhang,et al.  Experimental long-distance quantum secure direct communication. , 2017, Science bulletin.

[7]  Rafail Ostrovsky,et al.  Fuzzy Extractors: How to Generate Strong Keys from Biometrics and Other Noisy Data , 2004, SIAM J. Comput..

[8]  Peter Jorgensen,et al.  Applied cryptography: Protocols, algorithm, and source code in C: By Bruce Schneier. New York: John Wiley, 1993. 618 p. $44.95 (paper). ISBN 0-471-59756-2 , 1996 .

[9]  Shuang Wang,et al.  Practical gigahertz quantum key distribution robust against channel disturbance. , 2018, Optics letters.

[10]  W. Liu,et al.  A secret key distribution technique based on semiconductor superlattice chaos devices. , 2018, Science bulletin.

[11]  A. Guzmán,et al.  Critical role of two-dimensional island-mediated growth on the formation of semiconductor heterointerfaces. , 2012, Physical review letters.

[12]  H. Grahn,et al.  Determination of the interface parameter in terahertz quantum-cascade laser structures based on transmission electron microscopy , 2018, Applied Physics Letters.

[13]  Shu Lin,et al.  Low-density parity-check codes based on finite geometries: A rediscovery and new results , 2001, IEEE Trans. Inf. Theory.

[14]  Ueli Maurer,et al.  Generalized privacy amplification , 1994, Proceedings of 1994 IEEE International Symposium on Information Theory.

[15]  Hui Liu,et al.  Measurement-Device-Independent Quantum Key Distribution Over a 404 km Optical Fiber. , 2016, Physical review letters.

[16]  Kun Qiu,et al.  Secure key distribution based on chaos synchronization of VCSELs subject to symmetric random-polarization optical injection. , 2017, Optics letters.

[17]  A R Dixon,et al.  High speed prototype quantum key distribution system and long term field trial. , 2015, Optics express.

[18]  Liuguo Yin,et al.  Measurement-device-independent quantum communication without encryption. , 2018, Science bulletin.

[19]  Gui-Lu Long,et al.  Device-independent quantum secure direct communication against collective attacks. , 2020, Science bulletin.

[20]  C. Yang,et al.  Temperature dependence of the dielectric function of thin film CuI in the spectral range (0.6–8.3) eV , 2018, Applied Physics Letters.