针对近场通信(NFC)应用,通过改变材料中的Bi2O3含量和二磨后粉体活性,开发了一种高性能的Ni Cu Zn铁氧体材料。使用流延法制备长宽为125×125mm、厚度为100μm的铁氧体薄片。观察、测试了铁氧体材料的微观形貌、磁导率频谱以及铁氧...针对近场通信(NFC)应用,通过改变材料中的Bi2O3含量和二磨后粉体活性,开发了一种高性能的Ni Cu Zn铁氧体材料。使用流延法制备长宽为125×125mm、厚度为100μm的铁氧体薄片。观察、测试了铁氧体材料的微观形貌、磁导率频谱以及铁氧体薄片的可读写距离。结果表明,铁氧体薄片的使用性能与铁氧体材料在13.56MHz时磁导率实部μ'、虚部μ"的值有关。通过改变材料中Bi2O3含量以及二磨后粉体活性,可获得致密度高、晶粒细小均匀,低频下μ'较高、μ"较低的铁氧体材料。在13.56MHz时磁导率实部μ'高于150,虚部μ"低于5。插入该铁氧体薄片后RFID天线紧贴金属的情况下可读写距离可以恢复到原始读写距离的80%。展开更多
We have studied highly excited sodium in various electric fields, parallel electric and magnetic fields, with one σ andπ photon irradiation, and even in a magnetic field with a complex laser polarization configurati...We have studied highly excited sodium in various electric fields, parallel electric and magnetic fields, with one σ andπ photon irradiation, and even in a magnetic field with a complex laser polarization configuration. The σ spectra shows a simple linear Stark effect with the applied electric field, while the π spectra exhibits a strong non-linear dependence on the electric field. The π transitions in parallel fields show a similar behavior to that in a pure electric field but the spectra get more smooth due to the magnetic field. The diamagnetic spectrum with laser polarization angles between 0 and π /2 proves that it can be reproduced by simple linear combination of π and σ components, indicating there is no interference between the π and σ channels. A full quantum calculation considering the quantum defects accounts for all the observations. The quantum defects, especially for the channel np, play an important role in the spectral profile.展开更多
文摘针对近场通信(NFC)应用,通过改变材料中的Bi2O3含量和二磨后粉体活性,开发了一种高性能的Ni Cu Zn铁氧体材料。使用流延法制备长宽为125×125mm、厚度为100μm的铁氧体薄片。观察、测试了铁氧体材料的微观形貌、磁导率频谱以及铁氧体薄片的可读写距离。结果表明,铁氧体薄片的使用性能与铁氧体材料在13.56MHz时磁导率实部μ'、虚部μ"的值有关。通过改变材料中Bi2O3含量以及二磨后粉体活性,可获得致密度高、晶粒细小均匀,低频下μ'较高、μ"较低的铁氧体材料。在13.56MHz时磁导率实部μ'高于150,虚部μ"低于5。插入该铁氧体薄片后RFID天线紧贴金属的情况下可读写距离可以恢复到原始读写距离的80%。
基金Project supported by the National Basic Research Program of China(Grant No.2013CB922003)the National Natural Science Foundation of China(Grant Nos.11174329 and 91121005)
文摘We have studied highly excited sodium in various electric fields, parallel electric and magnetic fields, with one σ andπ photon irradiation, and even in a magnetic field with a complex laser polarization configuration. The σ spectra shows a simple linear Stark effect with the applied electric field, while the π spectra exhibits a strong non-linear dependence on the electric field. The π transitions in parallel fields show a similar behavior to that in a pure electric field but the spectra get more smooth due to the magnetic field. The diamagnetic spectrum with laser polarization angles between 0 and π /2 proves that it can be reproduced by simple linear combination of π and σ components, indicating there is no interference between the π and σ channels. A full quantum calculation considering the quantum defects accounts for all the observations. The quantum defects, especially for the channel np, play an important role in the spectral profile.