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Y. Shibasaki

Publications and source records attributed to Y. Shibasaki.

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Measurement of radiant spectrum for excess heat generation in NiCu and Ni thin film during hydrogen gas desorption

Heat production in Ni-based thin films interacting with hydrogen gas was studied using a radiation calorimeter equipped with a composite photon-detector system. Measurements were performed on pure Ni foil and NiCu composite thin films. Electromagnetic radiation emitted from samples heated to approximately 1100 K in vacuum was recorded over the energy range of 0.05 - 2.5 eV. In this study,detailed spectra were obtained, particularly in the low-energy region below 0.5 eV. The peak of the thermal radiation spectrum was observed around 0.2 eV, deviating from that expected for simple graybody radiation. Spectral variations depending on the presence or absence of hydrogen differed between the NiCu and pure Ni samples. The total radiated energy was determined directly from the measured radiation power, without relying on radiation models. The excess heat generated in the NiCu sample was estimated to be approximately 1.1 W. A comparable but slightly smaller excess heat generation was also observed in Ni. Long-term measurements of the NiCu sample demonstrated sustained excess heat production for at least 215 hours, with a decay time exceeding 2000 hours.

physics.ins-det

Photon radiation calorimetry for anomalous heat generation in NiCu multilayer thin film during hydrogen gas desorption

In order to investigate the anomalous heat effect (AHE) in NiCu multilayer thin film, photon radiation calorimetry has been developed. Three types of photon detectors are employed to cover a wide range of wavelengths from 0.3 um to 5.5 um, i.e., photon energies from 0.2 to 1.8 eV. In the present work, the usefullness of the calorimetry is demonstrated for excess heat measurements with samples of Ni pure, NiCu composite layers, and Cu layer deposited on the Ni substrate. Direct comparisons of photon radiation spectra with and without H2 easily showed sample-specific differences in excess heat power. The samples of NiCu composite layer produced larger excess heat. By incorporating the measured radiant power into a heat flow model, the excess heat was deduced to be 4 - 6 W. The energy generated in 80 hours reached to 460 +/- 120 kJ: the generated energy per hydrogen was at least 410 +/- 108 keV/H atom. This is definitely not a chemical reaction, but producing energy at the level of nuclear reactions.

physics.ins-det