A reproducible Q80 Operator Loschmidt Echo study, from circuit construction and hardware execution to tensor-network limits and information scrambling.
Tag: quantum computing
Black Hole OLE, part 6: what the result proves and what comes next
A reproducible Q80 Operator Loschmidt Echo study, from circuit construction and hardware execution to tensor-network limits and information scrambling.
Black Hole OLE, part 4: the tensor-network challenge
A reproducible Q80 Operator Loschmidt Echo study, from circuit construction and hardware execution to tensor-network limits and information scrambling.
Black Hole OLE, part 3: Fire Opal on IBM Kingston
A reproducible Q80 Operator Loschmidt Echo study, from circuit construction and hardware execution to tensor-network limits and information scrambling.
Black Hole OLE, part 1: what we actually ran
A reproducible Q80 Operator Loschmidt Echo study, from circuit construction and hardware execution to tensor-network limits and information scrambling.
Black Hole OLE, part 2: how an Operator Loschmidt Echo works
A reproducible Q80 Operator Loschmidt Echo study, from circuit construction and hardware execution to tensor-network limits and information scrambling.
Fermi-Hubbard 2D cuprate series, part 1: from 1D to 2D
The second Fermi-Hubbard series starts by carrying the validation discipline from the earlier 1D IBM/TDVP route into a 2D cuprate-oriented ladder.
Fermi-Hubbard op 60 qubits, deel 1: van Hamiltoniaan naar snake-layout en fSWAPs
Een reproduceerbare, kleinere Fermi-Hubbard run laat zien waarom de Q-CTRL aanpak werkt: niet door een generieke compiler, maar door fysica, fermionische mapping, fSWAPs en een hardwarebewuste snake-layout samen te ontwerpen.
Black-Hole Information, OLE, and an 80-Qubit Echo Signal
Stephen Hawking’s black-hole information problem is one of the most famous puzzles in modern physics. If a black hole evaporates, what happens to the information that fell in? The modern answer is…


