<p>Nuclear fusion research for energy applications aims to create conditions that release more energy than required to initiate the fusion process<sup><CitationRef CitationID="CR1">1</CitationRef></sup>. To generate meaningful amounts of energy, fuels such as deuterium need to be spatially confined to increase the collision probability of particles<sup><CitationRef AdditionalCitationIDS="CR3" CitationID="CR2">2</CitationRef>–<CitationRef CitationID="CR4">4</CitationRef></sup>. We therefore set out to investigate whether electrochemically loading a metal lattice with deuterium fuel could increase the probability of nuclear fusion events. Here we report a benchtop fusion reactor that enabled us to bombard a palladium metal target with deuterium ions. These deuterium ions undergo deuterium–deuterium fusion reactions within the palladium metal. We showed that the in situ electrochemical loading of deuterium into the palladium target resulted in a 15(2)% increase in deuterium–deuterium fusion rates. This experiment shows how the electrochemical loading of a metal target at the electronvolt energy scale can affect nuclear reactions at the megaelectronvolt energy scale.</p>

错误:搜索内容不能为空,请输入英文关键词
错误:关键词超出字数限制,请精简
高级检索

Electrochemical loading enhances deuterium fusion rates in a metal target

  • Kuo-Yi Chen,
  • Jannis Maiwald,
  • Phil A. Schauer,
  • Sergey Issinski,
  • Fatima H. Garcia,
  • Ryan Oldford,
  • Luca Egoriti,
  • Shota Higashino,
  • Aref E. Vakili,
  • Yunzhou Wen,
  • Joseph Z. X. Koh,
  • Thomas Schenkel,
  • Monika Stolar,
  • Amanda K. Brown,
  • Curtis P. Berlinguette

摘要

Nuclear fusion research for energy applications aims to create conditions that release more energy than required to initiate the fusion process1. To generate meaningful amounts of energy, fuels such as deuterium need to be spatially confined to increase the collision probability of particles24. We therefore set out to investigate whether electrochemically loading a metal lattice with deuterium fuel could increase the probability of nuclear fusion events. Here we report a benchtop fusion reactor that enabled us to bombard a palladium metal target with deuterium ions. These deuterium ions undergo deuterium–deuterium fusion reactions within the palladium metal. We showed that the in situ electrochemical loading of deuterium into the palladium target resulted in a 15(2)% increase in deuterium–deuterium fusion rates. This experiment shows how the electrochemical loading of a metal target at the electronvolt energy scale can affect nuclear reactions at the megaelectronvolt energy scale.