CrOxNy Thin Film Temperature Sensors for High-Precision Cryogenic Measurement in Strong Magnetic Field

IEEE ELECTRON DEVICE LETTERS(2023)

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摘要
Cryogenic temperature measurement in strong magnetic field is indispensable for researches based on cryogenic and strong magnetic field composite environment. In this work, oxygen is added into CrNx film to form CrOxNy for the development of resistive cryogenic temperature sensor with high sensitivity, high stability and low magnetoresistance. CrOxNy thin films with different electric properties were deposited under variant N-2/O-2 gas flow rates by DC magnetron reactive sputtering, and micro sensors were fabricated. The sensors' performances were systematically analyzed in 4.2K similar to 300K. They show super-high sensitivities, the absolute sensitivity is between 2.61 and 4.26 when the N-2/O-2 flow rate is 17.8sccm. The temperature measurement shift after 10 and 15 thermal cycles between 4.2K similar to 300K is in the range of -8.26mK similar to 11.79mK. The temperature measurement shift in magnetic field of 9T is in the range of -30.2mK similar to 178mK, and the relative deviation is in the range of +/- 0.164%, with an absolute value of less than 0.086% at most of the measured points, indicating strong performance of against the influence of magnetic field.
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关键词
Temperature sensors,Magnetic fields,Magnetic field measurement,Sensitivity,Magnetic sensors,Cryogenics,Thermal stability,CrOxNy thin film,cryogenic,temperature sensor,strong magnetic field
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