4 Matching Results

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Deep Minima and Vortices for Positronium Formation in Low-Energy Positron-Hydrogen Collisions (open access)

Deep Minima and Vortices for Positronium Formation in Low-Energy Positron-Hydrogen Collisions

Article using the two-channel Kohn inverse and Kohn variational methods to investigate ground-state positronium (Ps) formation in positron-hydrogen collisions in the Ore gap. This is the Accepted Manuscript Version of the article.
Date: September 30, 2019
Creator: Alrowaily, Albandari W.; Quintanilla, Sandra J. & Van Reeth, P.
Object Type: Article
System: The UNT Digital Library
Complex Periodicity and Synchronization (open access)

Complex Periodicity and Synchronization

Article explores experimental walking synchronization and complexity restoration. The main goal is to establish a physiological foundation of these important results based on the recent advances on the dynamics of the brain, interpreted as a system at criticality.
Date: September 30, 2020
Creator: Grigolini, Paolo; Mahmoodi, Korosh & West, Bruce J.
Object Type: Article
System: The UNT Digital Library
Tunable Hybrid Phononic Crystal Lens Using Thermo-Acoustic Polymers (open access)

Tunable Hybrid Phononic Crystal Lens Using Thermo-Acoustic Polymers

Article describes a study where a tunable hybrid solid ultrasonic lens is realized by combining a PnC lens with PVA-PNIPAm thermoacoustic hydrogel to modify the transmission and dispersion properties of transient acoustic waves.
Date: September 30, 2019
Creator: Walker, Ezekiel; Reyes-Contreras, Delfino; Jin, Yuqi & Neogi, Arup
Object Type: Article
System: The UNT Digital Library
Exploring thermal properties of nanoscale wide bandgap semiconductors via  ultrafast thermal-emission spectroscopy (open access)

Exploring thermal properties of nanoscale wide bandgap semiconductors via ultrafast thermal-emission spectroscopy

Data management plan for the grant, "Exploring thermal properties of nanoscale wide bandgap semiconductors via ultrafast thermal-emission spectroscopy." In this project, we aim to develop a new thermometrology technique based on ultrafast thermal emission to directly and accurately measure thermal properties of thin-film wide bandgap semiconductors.
Date: 2023-09-30/2025-09-29
Creator: Xiao, Yuzhe
Object Type: Text
System: The UNT Digital Library