5 papers
Aziz and Howl's Gravity-Induced Entanglement Channel is Essentially Classical Mechanics
Hanyu Xue, Ziqian Tang, Chen Yang +3
Aziz and Howl argued that a classical gravitational field can generate quantum entanglement through a quantum-field-theoretic channel mediated by virtual matter propagation. Howeve…
Matter-Mediated Entanglement in Classical Gravity: Suppression by Binding Potentials and Localization
Ziqian Tang, Chen Yang, Zizhao Han +3
Aziz and Howl [Nature 646 (2025)] argue that two spatially separated masses can become entangled even when gravity is treated as a classical field, by invoking higher-order "virtua…
Quantum-classical gravity distinction in reservoir-engineered massive quantum system
Ziqian Tang, Zizhao Han, Zikuan Kan +4
Massive quantum systems have emerged as compelling tabletop interface-systems for testing the quantum nature of gravity. However, conventional schemes that focus on directly using…
Cavity Optomechanical Probe of Gravity Between Massive Mechanical Oscillators
Ziqian Tang, Wenlong Li, Huanying Sun +3
Exploring gravitational interactions between objects with small masses has become increasingly timely. Concurrently, oscillators with masses ranging between milligrams and grams in…
Optimal Form Factors for Experimental Proposals on Gravity-Induced Entanglement
Ziqian Tang, Hanyu Xue, Zizhao Han +3
The interface between quantum mechanics and gravity remains an unresolved issue. Recent advances in precision measurement suggest that detecting gravity-induced entanglement in osc…