4 papers
Aperiodic lattices for tunable photonic bandgaps and localization
Subhasish Chakraborty, Michael C. Parker, Robert J. Mears
Photonic bandgap engineering using aperiodic lattices (ALs) is systematically studied. Up to now ALs have tended to be defined by specific formulae (e.g. Fibonacci, Cantor), and th…
A comprehensive Fourier (k-) space design approach for controllable single and multiple photon localization states
Subhasish Chakraborty1, Michael C. Parker2, Robert J. Mears3 +1
A Fourier-space based design approach for the systematic control of single and multiple photon localization states in a 1D lattice is presented. Resultant lattices are aperiodic in…
A Dynamic Theory of Information and Entropy
Michael C. Parker, Stuart D. Walker
We propose a new thermodynamic, relativistic relationship between information and entropy, which is closely analogous to the classic Maxwell electro-magnetic equations. Determinati…
Is Computation Reversible?
Michael C. Parker, Stuart D. Walker
Recent investigations into the physical nature of information and fundamental limits to information transmission have revealed questions such as the possibility of superluminal dat…