collaborators

5 papers

quant-ph2026

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…

quant-ph2025

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…

quant-ph2025

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…

quant-ph2025

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…

quant-ph2025

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…