Precision bond lengths for Rydberg Matter clusters K19 in excitation levels n =4, 5 and 6 from rotational radio-frequency emission spectra

作者: L. Holmlid

DOI: 10.1080/00268970701197387

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摘要: Several long series of up to 40 equally spaced lines are observed in the radio-frequency range 15–90 MHz that attributed stimulated emission from electronically excited condensed matter called Rydberg Matter (RM). These frequencies more than a factor 1000 smaller for most ordinary molecules, and if they did not agree with RM clusters would indicate extremely large heavy molecules unlikely exist gas phase at room temperature. Theoretical predictions within 2% frequencies. Such planar, six-fold symmetric oblate rotors. The prominent B = 0.9292 ± 0.0001 MHz (3.067 × 10−5 cm−1) agrees accurately theoretically predicted B value cluster K19 excitation level n = 4, thus K–K bond length 2.4074 nm. Two other n = 5 6, lengths 3.804 5.518 nm, respectively. ratio between interatomic distanc...

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