 | 2011 |
| 16 |  | John Robert Burger:
A Theory of Consciousness Founded on Neurons That Behave Like Qubits
CoRR abs/1110.3547: (2011) |
| 2010 |
| 15 |  | John Robert Burger:
XOR at a Single Vertex -- Artificial Dendrites
CoRR abs/1004.2280: (2010) |
| 14 |  | John Robert Burger:
Artificial Learning in Artificial Memories
CoRR abs/1007.0728: (2010) |
| 13 |  | John Robert Burger:
Artificial Brain Based on Credible Neural Circuits in a Human Brain
CoRR abs/1008.5161: (2010) |
| 2008 |
| 12 |  | John Robert Burger:
Explaining the Logical Nature of Electrical Solitons in Neural Circuits
CoRR abs/0804.4237: (2008) |
| 11 |  | John Robert Burger:
Cognitive Architecture for Direction of Attention Founded on Subliminal Memory Searches, Pseudorandom and Nonstop
CoRR abs/0805.3126: (2008) |
| 2006 |
| 10 |  | John Robert Burger:
Associative Memory For Reversible Programming and Charge Recovery
CoRR abs/cs/0602078: (2006) |
| 2005 |
| 9 |  | John Robert Burger:
Quantum Algorithm Processor For Finding Exact Divisors
CoRR abs/cs/0508038: (2005) |
| 8 |  | John Robert Burger:
Quantum Algorithm Processors to Reveal Hamiltonian Cycles
CoRR abs/cs/0508116: (2005) |
| 7 |  | John Robert Burger:
Reversible CAM Processor Modeled After Quantum Computer Behavior
CoRR abs/cs/0512104: (2005) |
| 2004 |
| 6 |  | John Robert Burger:
Novel Quantum Computer Emulator Chip.
ESA/VLSI 2004: 309-315 |
| 5 |  | John Robert Burger:
Data-stationary Architecture to Execute Quantum Algorithms Classically
CoRR abs/cs/0412040: (2004) |
| 2003 |
| 4 |  | John Robert Burger:
Symmetric and Antisymmeteric Functions, a New Way to Test a Quantum Computer
CoRR cs.CE/0304016: (2003) |
| 3 |  | John Robert Burger:
Note on Needle in a Haystack
CoRR cs.CE/0308043: (2003) |
| 2 |  | John Robert Burger:
New Approachs to Quantum Computer Simulaton in a Classical Supercomputer
CoRR quant-ph/0308158: (2003) |
| 1983 |
| 1 |  | John Robert Burger:
Data-Stationary Instructions as a Way to Minimize Long Distance Communications in VLSI.
ICPP 1983: 547-553 |