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  • Cite this article:

    Shuang Li, Zhiyuan Lin, Sen Li, Mohan Zhang, Fengquan Zhang, Jin Hu, Xiaotong Liu, Lin Meng, Tim Byrnes, Valentin Ivannikov. Pre-emptive parametric kill switch for evaporative atomic sources in vacuumJ. Chin. Phys. B, 2026, 35(7): 073701.
    Shuang Li, Zhiyuan Lin, Sen Li, Mohan Zhang, Fengquan Zhang, Jin Hu, Xiaotong Liu, Lin Meng, Tim Byrnes, Valentin Ivannikov. Pre-emptive parametric kill switch for evaporative atomic sources in vacuumJ. Chin. Phys. B, 2026, 35(7): 073701.
  • Pre-emptive parametric kill switch for evaporative atomic sources in vacuum

    • A robust pre-emptive kill switch for cold atom experiments is introduced to significantly reduce costly system reassembly or replacement. The design incorporates upper (alarm) and lower (evaporation) event detection mechanisms based on predefined thresholds. Meanwhile, a duty cycle timing methodology is employed to prevent unintentional activation of the dispenser when pulse signals occur. The circuit employs generic components, a modular design, and formalized logic, ensuring cost-effectiveness and making the design suitable for school laboratories and other research environments. This design is highly versatile and can be applied to other sensitive devices beyond dispensers, such as heating filaments, titanium sublimation pumps, tungsten lamps, and comparable systems.
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