Webinar #5 of the winter-spring 2023 session of the Klimov-Zatelepin seminar was held on March 15, 2023 (Wednesday) between 16:00 to 18:00 Moscow time.
Detection of cold neutrons by a scintillator generated in the TNLT-L installation
F.S. Zaitsev - 1, S.M. Godin - 2
1 - Specialist in thermonuclear plasma physics, ether theory, Doctor of Physical and Mathematical Sciences, Professor, Academician of the Russian Academy of Natural Sciences
2 - Specialist in experimental physics and LENR, physicist, designer
Speaker Zaitsev Fedor Sergeevich
The report discusses the difficulties of measuring cold and thermal neutrons, which do not allow the use of conventional equipment in conditions of TNLT-type facilities and, possibly, in conditions of other LENR devices. The main problem is the presence of strong electromagnetic interference, the amplitude and frequency of which many times exceed the amplitude and frequency of the useful signal. The authors proposed a measurement technique based on a scintillation sensor, which takes into account the presence of strong interference. The results of measurements of neutron generation in TNLT- L are presented. The obtained data are compared with the data of three other diagnostics. The conducted studies allow us to draw a conclusion about the generation of cold and thermal neutrons in the TNLT-L facility. The technique can be used to experimentally substantiate the emission of cold neutrons without the use of special measuring instruments.
Detection of cold neutrons by a scintillator generated in the TNLT-L installation
F.S. Zaitsev - 1, S.M. Godin - 2
1 - Specialist in thermonuclear plasma physics, ether theory, Doctor of Physical and Mathematical Sciences, Professor, Academician of the Russian Academy of Natural Sciences
2 - Specialist in experimental physics and LENR, physicist, designer
Speaker Zaitsev Fedor Sergeevich
The report discusses the difficulties of measuring cold and thermal neutrons, which do not allow the use of conventional equipment in conditions of TNLT-type facilities and, possibly, in conditions of other LENR devices. The main problem is the presence of strong electromagnetic interference, the amplitude and frequency of which many times exceed the amplitude and frequency of the useful signal. The authors proposed a measurement technique based on a scintillation sensor, which takes into account the presence of strong interference. The results of measurements of neutron generation in TNLT- L are presented. The obtained data are compared with the data of three other diagnostics. The conducted studies allow us to draw a conclusion about the generation of cold and thermal neutrons in the TNLT-L facility. The technique can be used to experimentally substantiate the emission of cold neutrons without the use of special measuring instruments.
- Категория
- Усилители

Комментариев нет.