机械容积
剂量计
材料科学
剂量学
热释光剂量计
发光
辐射
光电子学
热释光
吸收剂量
热释光剂量学
辐照
光学
测距
放射化学
作者
Chongyang Cai,Leipeng Li,Xuan Fan,Jie Wang,Tingting Deng,Feng Wang,Yanmin Yang
摘要
ABSTRACT Accurate and reliable radiation dosimetry is critical for applications ranging from cancer radiotherapy to nuclear safety and space exploration. While thermoluminescence and optically stimulated luminescence serve as benchmark technologies, their inherently destructive readout mechanisms preclude the straightforward, repeated verification of an absorbed dose and require complex laboratory procedures. Here, we propose a novel mechanoluminescence (ML) ratiometric dosimetry. It depends on KMgF 3 :Sm 2+,3+ that can exhibit both ML at 685 nm (Sm 2+ : 5 D 0 → 7 F 0 ) and 602 nm (Sm 3+ : 4 G 5/2 → 6 H 7/2 ) under external force stimulation. The ML intensity ratio of the 602 nm band to the 685 nm band increases linearly with increasing the radiation dosage of x‐rays. This ratiometric approach provides a robust internal self‐calibration, making the readout immune to fluctuations in stress magnitude or duration, a fatal flaw in prior ML intensity‐based methods. Therefore, we can obtain the x‐ray dose simply by pressing the KMgF 3 :Sm 2+,3+ samples. This strategy allows for multiple, nondestructive measurements, enabling on‐demand verification of radiation doses with unparalleled simplicity.
科研通智能强力驱动
Strongly Powered by AbleSci AI