Shuming Cheng

Experimentally ruling out joint reality based on operational completeness

Qiuxin Zhang [1], Yu Xiang [2], Xiaoting Gao [2], Chenhao Zhu [1], Yuxin Wang [1], Liangyu Ding [1], Xiang Zhang [1,3], Shuaning Zhang, Shuming Cheng [4,5], Michael J. W. Hall [6], Qiongyi He [2,7], Wei Zhang [1,3]

Abstract

Whether the observables of a physical system admit real values is of fundamental importance to a deep understanding of nature. In this work, we report a device-independent experiment to confirm that the joint reality of two observables on a single two-level system is incompatible with the assumption of operational completeness, which is strictly weaker than that of preparation noncontextuality. We implement two observables on a trapped $^{171}{\rm Yb}^{+}$ ion to test this incompatibility via violation of certain inequalities derived from both linear and nonlinear criteria. Moreover, by introducing a highly controllable dephasing channel, we show that the nonlinear criterion is more robust against noise. Our results push the fundamental limit to delineate the quantum-classical boundary and pave the way for exploring relevant problems in other scenarios.