Active LANR Systems Emit a 327.37 MHz Maser Line

Mitchell R. Swartz · Journal of Condensed Matter Nuclear Science · 2020

Active LANR systems, both aqueous and dry preloaded nanomaterials, emit very narrow bandwidth radio frequency (RF) hyperfine emission peaks (ca. 327.37 MHz) very close to the Deuterium Line (DL). In a Fabry–Perot structure, two electrically driven PdD– ZrO2 preloaded components produce a solid state DL maser when driven above a threshold voltage, and below their electrical avalanche breakdown voltage. When the systems are electrically driven at higher applied voltage, a superhyperfine structure of sidebands appears with significant local in situ information. The RF emission proves that D is the LANR fuel and demonstrates that the deuteron, in the excited pre-4He state, is a free radical emitting from an FCC vacancy.

Read the paper · More papers on PaperTik