Simulating Black Hole Thermality and Interior Scrambling on a Superconducting Quantum Processor
An arXiv preprint reports simulating black hole thermality and interior scrambling on a superconducting quantum processor. The work maps black hole physics onto qubit dynamics, probing information scrambling through measurements accessible to near-term hardware.
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What this could mean
- 0–2 yearsPlausible
This could enable superconducting quantum processors to become testbeds for probing black hole information scrambling beyond classical simulability.
Existing superconducting platforms already run the required random circuit ensembles and can measure out-of-time-ordered correlators; moderate increases in qubit count and gate depth could push simulations into regimes where classical verification becomes hard, allowing tests of scrambling conjectures.
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