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» Quantum computation and quantum information
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ASC
2008
13 years 10 months ago
Morphic computing
Morphic Computing is based on Field Theory [14-16] and more specifically Morphic Fields. Morphic Fields were first introduced by [18] from his hypothesis of formative causation tha...
Germano Resconi, Masoud Nikravesh
DAC
2003
ACM
14 years 10 months ago
Quantum-dot cellular automata: computing by field polarization
As CMOS technology continues its monotonic shrink, computing with quantum dots remains a goal in nanotechnology research. Quantum-dot cellular automata (QCA) is a paradigm for low...
Gary H. Bernstein
SOFSEM
2009
Springer
14 years 2 months ago
Randomness and Determination, from Physics and Computing towards Biology
In this text we will discuss different forms of randomness in Natural Sciences and present some recent results relating them. In finite processes, randomness differs in various ...
Giuseppe Longo
PROCEDIA
2010
86views more  PROCEDIA 2010»
13 years 8 months ago
Scaling of ab-initio nuclear physics calculations on multicore computer architectures
We discuss the scaling behavior of a state-of-the-art Configuration Interaction code for nuclear physics on modern multicore computer architectures. In the CI approach, the quant...
Pieter Maris, Masha Sosonkina, James P. Vary, Esmo...
VTS
2003
IEEE
115views Hardware» more  VTS 2003»
14 years 3 months ago
Fault Testing for Reversible Circuits
Irreversible computation necessarily results in energy dissipation due to information loss. While small in comparison to the power consumption of today’s VLSI circuits, if curre...
Ketan N. Patel, John P. Hayes, Igor L. Markov