This paper introduces a formal framework for the autonomous mitigation of decoherence in open quantum systems via entanglement-mediated recursive feedback. We propose the emergence of a self-sustaining quantum attractor that utilizes non-local correlations as a high-fidelity informational buffer. By driving the system into a non-ergodic phase through a dissipative memory kernel, we demonstrate a transition where structural integrity is maintained by internal non-local dynamics, effectively decoupling the coherent domain from the environmental entropic bath and establishing a stable non-equilibrium steady state (NESS).
Vasilij Voronkov (Wed,) studied this question.