collaborators

5 papers

physics.atom-ph2026

Magnetic resonance in quantum computing and in accurate measurements of the nuclear moments of atoms and molecules

Zhichen Liu, Richard A. Klemm

Modern experimental techniques can generate magnetic fields of the form H(t) = H0 z-hat + H1 [x-hat cos(ωt) + y-hat sin(ωt)], at frequencies within an order of magnitude of the n…

cond-mat.supr-con2026

Wave functions for the regular pentagonal two-dimensional quantum box and thin microstrip antenna

Tristan Langhorne, Erik E. Domenech, Juan Oliveros Gonzalez +1

The general wave functions for the two-dimensional regular pentagonal quantum box and thin microstrip antenna are derived. As for the square, equilateral triangular, and circular d…

quant-ph2025

Terahertz source-on-a-chip with decade-long stability using layered superconductor elliptical microcavities

Mingqi Zhang, Shungo Nakagawa, Yuki Enomoto +8

Coherent, continuous-wave, and electrically tunable chip-scale terahertz (THz) sources are critical for emerging applications in sensing, imaging, spectroscopy, communication, spac…

cond-mat.supr-con2025

Magnetic-field oscillations of the critical temperature in ultraclean, two-dimensional Type-I superconductor

Aiying Zhao, Richard A Klemm, Qiang Gu

We investigate the influence of Landau Levels (LLs) and Zeeman energy, induced by an applied magnetic field , on the critical temperature for two-dimensional (2D) ul…

cond-mat.supr-con2025

Model for the commensurate charge-density waves in under-hole-doped cuprate superconductors

Jacob Morrissey, Timothy J. Haugan, Richard A. Klemm

A simple model of the commensurate charge-density wave (CCDW) portion of the underdoped pseudogap regions of monolayer BiSrLaCuO (Bi2201), bilayer BiSr$…