Related Experiment Videos
Giant-dipole-resonance absorption in atomic thorium by a novel two-laser technique
Physical Review Letters
|September 29, 1986
Abstract
No abstract available in PubMed .
Related Concept Videos
Articles linked to this work by shared authors, journal, and citation graph.
9:45-10:00. Positron Emission Tomography (PET) is Superior to Computerized Tomography (CT) for Metastatic Staging in Melanoma Patients.
Clinical positron imaging : official journal of the Institute for Clinical P.E.T·2001
Tandem nitroaldol-dehydration reactions employing the dianion of phenylsulfonylnitromethane(1)
The Journal of organic chemistry·2000
Testing whether two chaotic one dimensional processes are dynamically identical
Physical review letters·2000
Three coupled oscillators as a universal probe of synchronization stability in coupled oscillator arrays
Physical review. E, Statistical physics, plasmas, fluids, and related interdisciplinary topics·2000
Shallow implantation of "Size-Selected" Ag clusters into graphite
Physical review letters·2000
Metastability of the Skyrmion Lattice in GdRu_{2}Si_{2} Revealed by Ultrasound.
Physical review letters·2026
Orbital Accumulation Induced by Chiral Phonons.
Physical review letters·2026
Experimental Quantum Voting Using Photonic Greenberger-Horne-Zeilinger States.
Physical review letters·2026
Energy Gap of Quantum Spin Glasses: A Projection Quantum Monte Carlo Study.
Physical review letters·2026
Capturing Rainbow in On-Chip Phononic Crystals.
Physical review letters·2026
Coexistence and Tunability of Orbital and Spin Hall Effects in RuO_{2}.
Physical review letters·2026
Pulmonary Vein Isolation (PVI) Versus PVI With Posterior Wall Isolation With PFA for Paroxysmal Atrial Fibrillation.
Pacing and clinical electrophysiology : PACE·2026
Thulium fiber laser versus high-power holmium laser for renal stones: a systematic review and meta-analysis of high-quality studies.
Therapeutic advances in urology·2026
Transient striations during gas breakdown under radio-frequency excitation.
Physical review. E·2026
Excitons make quantum leap in just 2.5 femtoseconds.
Light, science & applications·2026