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From the 1 of 12 linked papers with an AI index.

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20242026
most citedInterpreting Bohm-like quantum potentials in "Computing quantum waves exactly from classical action"

3 citations · 3 across the 1 of their papers we have counts for

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12 papers

quant-ph20263 cited

Interpreting Bohm-like quantum potentials in "Computing quantum waves exactly from classical action"

Winfried Lohmiller, Jean-Jacques Slotine

The paper clarifies that Bohm‑like quantum potentials vanish along extremal action paths when the action Laplacian is space‑independent, contrasting with the standard Bohm‑Madelung…

cs.LG2026

NRGPT: An Energy-based Alternative for GPT

Nima Dehmamy, Benjamin Hoover, Bishwajit Saha +3

Generative Pre-trained Transformer (GPT) architectures are the most popular design for language modeling. Energy-based modeling is a different paradigm that views inference as a dy…

quant-ph2026

Quantum Optimal Control for Coherent Spin Dynamics of Radical Pairs via Pontryagin Maximum Principle

Ugur G. Abdulla, Jose H. Rodrigues, Jean-Jacques Slotine

This paper aims to devise the shape of the external electromagnetic field that drives the spin dynamics of radical pairs to a quantum coherent state through maximization of the tri…

cs.LG2026

Riemannian Optimization in Modular Systems

Christian Pehle, Jean-Jacques Slotine

Understanding how systems built out of modular components can be jointly optimized is an important problem in biology, engineering, and machine learning. The backpropagation algori…

math.OC2026

Unlocked Backpropagation using Wave Scattering

Christian Pehle, Jean-Jacques Slotine

Both the backpropagation algorithm in machine learning and the maximum principle in optimal control theory are posed as a two-point boundary problem, resulting in a "forward-backwa…

quant-ph2026

On computing quantum waves exactly from classical and relativistic action

Winfried Lohmiller, Jean-Jacques Slotine

We show that the Schrödinger equation can be solved exactly based only on classical least action. Fundamental postulates of quantum mechanics can in turn be derived directly from…