activity
20162020
most citedPerfect coherent transfer in an on-chip reconfigurable nanoelectromechanical network

23 citations · 37 across the 3 of their papers we have counts for

collaborators

5 papers

quant-ph202023 cited

Perfect coherent transfer in an on-chip reconfigurable nanoelectromechanical network

Tian Tian, Shaochun Lin, Liang Zhang +5

Realizing a controllable network with multiple degrees of interaction is a challenge to physics and engineering. Here, we experimentally report an on-chip reconfigurable network ba…

physics.app-ph20209 cited

Realization of programmable nanomechanical lattice with both nearest-neighboring and next-nearest-neighboring couplings

Shaochun Lin, Tian Tian, Pu Huang +3

The programmable artificial lattice, based on the controllability of coupling strengths and the scalability of multiple sites, is desperately desired in engineering metamaterials a…

physics.flu-dyn20195 cited

Manipulation of a Micro-object Using Topological Hydrodynamic Tweezers

Peiran Yin, Rui Li, Zizhe Wang +8

Manipulating micro-scale object plays paramount roles in a wide range of fundamental researches and applications. At micro-scale, various methods have been developed in the past de…

quant-ph2018

Observation of dynamical phase transitions in a topological nanomechanical system

Tian Tian, Yongguan Ke, Liang Zhang +5

Dynamical phase transitions (DPTs), characterized by non-analytic behaviors in time domain, extend the equilibrium phase transitions to far-from-equilibrium situations. It has been…

cond-mat.mes-hall2016

Non-reciprocal Radio Frequency Transduction in a Parametric Mechanical Artificial Lattice

Pu Huang, Liang Zhang, Jingwei Zhou +4

Generating non-reciprocal radio frequency transduction plays important roles in a wide range of research and applications, and an aspiration is to integrate this functionality into…