Nanomechanical resonators provide a compelling platform to investigate and exploit phase transitions coupled to mechanical degrees of freedom because resonator frequencies and quality factors are exquisitely sensitive to changes in state, particularly for discontinuous changes accompanying a first-order phase transition. Correlated scanning fiber-optic interferometry and dual-beam Raman spectroscopy were used to investigate mechanical fluctuations of vanadium dioxide (VO<sub>2</sub>) nanowires across the first order insulator to metal transition. Unusually large and controllable changes in resonator frequency were observed due to the influences of domain wall motion and anomalous phonon softening on the effective modulus. In addition, extra...
ABSTRACT: The abrupt first-order metal−insulator phase transition in single-crystal vanadium dioxide...
ABSTRACT: The metal to insulator transition (MIT) of strongly correlated materials is subject to str...
Micro- and nano-mechanical systems may take advantage from using materials having multiple functiona...
Nanomechanical resonators provide a compelling platform to investigate and exploit phase transitions...
We study the strain state of doubly clamped VO2 nanobeam devices by dynamically probing resonant fre...
ABSTRACT: We study the strain state of doubly clamped VO2 nanobeam devices by dynamically probing re...
We study the strain state of doubly clamped VO<sub>2</sub> nanobeam devices by dynamically probing r...
The abrupt first-order metal–insulator phase transition in single-crystal vanadium dioxide nanowires...
The simultaneous metal-insulator and structural phase transitions of vanadium dioxide (VO2) makes th...
We investigated external-stress-induced metal-insulator phase transitions in cantilevered single-cry...
Phase transitions in correlated materials can be manipulated at the nanoscale to yield emergent func...
Phase transitions in correlated materials can be manipulated at the nanoscale to yield emergent func...
The abrupt first-order metal-insulator phase transition in single-crystal vanadium dioxide nanowires...
Single-crystal micro-and nanomaterials often exhibit higher yield strength than their bulk counterpa...
The metal to insulator transition (MIT) of strongly correlated materials is subject to strong lattic...
ABSTRACT: The abrupt first-order metal−insulator phase transition in single-crystal vanadium dioxide...
ABSTRACT: The metal to insulator transition (MIT) of strongly correlated materials is subject to str...
Micro- and nano-mechanical systems may take advantage from using materials having multiple functiona...
Nanomechanical resonators provide a compelling platform to investigate and exploit phase transitions...
We study the strain state of doubly clamped VO2 nanobeam devices by dynamically probing resonant fre...
ABSTRACT: We study the strain state of doubly clamped VO2 nanobeam devices by dynamically probing re...
We study the strain state of doubly clamped VO<sub>2</sub> nanobeam devices by dynamically probing r...
The abrupt first-order metal–insulator phase transition in single-crystal vanadium dioxide nanowires...
The simultaneous metal-insulator and structural phase transitions of vanadium dioxide (VO2) makes th...
We investigated external-stress-induced metal-insulator phase transitions in cantilevered single-cry...
Phase transitions in correlated materials can be manipulated at the nanoscale to yield emergent func...
Phase transitions in correlated materials can be manipulated at the nanoscale to yield emergent func...
The abrupt first-order metal-insulator phase transition in single-crystal vanadium dioxide nanowires...
Single-crystal micro-and nanomaterials often exhibit higher yield strength than their bulk counterpa...
The metal to insulator transition (MIT) of strongly correlated materials is subject to strong lattic...
ABSTRACT: The abrupt first-order metal−insulator phase transition in single-crystal vanadium dioxide...
ABSTRACT: The metal to insulator transition (MIT) of strongly correlated materials is subject to str...
Micro- and nano-mechanical systems may take advantage from using materials having multiple functiona...