Anapole-enabled RFID security against far-field attacks

被引:2
|
作者
Mikhailovskaya, Anna [2 ]
Shakirova, Diana [1 ]
Krasikov, Sergey [1 ]
Yusupov, Ildar [1 ]
Dobrykh, Dmitry [2 ]
Slobozhanyuk, Alexey [1 ]
Bogdanov, Andrey [1 ]
Filonov, Dmitry [3 ]
Ginzburg, Pavel [2 ]
机构
[1] ITMO Univ, Sch Phys & Engn, St Petersburg 197101, Russia
[2] Tel Aviv Univ, Sch Elect Engn, IL-69978 Tel Aviv, Israel
[3] Moscow Inst Phys & Technol, Ctr Photon & 2D Mat, Dolgoprudnyi 141700, Russia
基金
俄罗斯科学基金会;
关键词
anapole; multipole engineering; RFID tech-nology; scattering; 3RD HARMONIC-GENERATION; WIRELESS COMMUNICATION; COMPREHENSIVE SURVEY; LONG-RANGE; ANTENNA; METAMATERIAL; MODES; INTEGRATION; ABSORPTION; EXCITATION;
D O I
10.1515/nanoph-2021-0394
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Radio frequency identification (RFID) is a widely used wireless technology for contactless data exchange. Owing to international standardization and one-way security nature of the communication protocol, RFID tags, holding sensitive information, may be a subject to theft. One of the major security loopholes is the so-called far-field attack, where unauthorized interrogation is performed from a distance, bypassing the user's verification. This loophole is a penalty of using a dipole-like RFID tag antenna, leaking wireless information to the far-field. Here we introduce a new concept of anapole-enabled security, prohibiting far-field attacks by utilizing fundamental laws of physics. Our design is based on radiationless electromagnetic states (anapoles), which have high near-field concentration and theoretically nulling far-field scattering. The first property enables performing data readout from several centimeters (near-field), while the second prevents attacks from a distance, regardless an eavesdropper's radiated power and antenna gain. Our realization is based on a compact 3 cm high-index ceramic core-shell structure, functionalized with a thin metal wire and an integrated circuit to control the tag. Switching scheme was designed to provide a modulation between two radiation less anapole states, blocking both up and down links for a far -field access. The anapole tag demonstrates more than 20 dB suppression of far -field interrogation distance in respect with a standard commercial tag, while keeping the near -field performance at the same level. The proposed concept might significantly enhance the RFID communication channel in cases, where information security prevails over cost constrains.
引用
收藏
页码:4409 / 4418
页数:10
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