7 papers
Binary Classifier Wire-Resistance Attack on KLJN: Impact of Narrowing the Resistor Gap
Mehmet Yildirim, Laszlo B. Kish
It is shown that narrowing the difference between the high and low resistor values in the Kirchhoff Law-Johnson Noise (KLJN) key exchange strongly affects security against a recent…
A Binary Classifier-Based Wire Resistance Attack on the KLJN Secure Key Exchanger
Mehmet Yildirim, Fahrettin Ay, Laszlo B. Kish
The statistical fluctuations of the mean-square noise voltages measured at Alice's and Bob's ends in the KLJN scheme are used to implement a binary classifier for a new type of wir…
Pairwise XOR and XNOR Gates in Squeezed Instantaneous Noise Based Logic
Nasir Kenarangui, Laszlo B. Kish, Arthur Powalka
Instantaneous noise-based logic (INBL) is a novel computing approach that encodes binary information using stochastic processes. It uses 2M orthogonal stochastic reference noises f…
New XOR & XNOR Operations in Instantaneous Noise-Based Logic
Nasir Kenarangui, Arthur Powalka, Laszlo Kish
Instantaneous Noise-Based Logic (INBL) presents a classical noise-based computing framework as an alternative to quantum computation, though some logic gates remain unimplemented f…
Exponential parallelism in practice: a comparative feature on quantum computing and instantaneous noise-based logic
Laszlo B. Kish
Exponential parallelism, a defining principle of advanced computational systems, holds promise for transformative impacts across several scientific and industrial domains. This fea…
"Quantum supremacy" challenged. Instantaneous noise-based logic with benchmark demonstrations
Nasir Kenarangui, Walter C. Daugherity, Arthur Powalka +1
Instantaneous Noise-Based Logic (INBL) represents a computational paradigm that offers a deterministic alternative to quantum computing, potentially challenging the notion of quant…