In this paper, a multiscale non-reciprocity device based on the layered topology of one-dimensional (1-D) photonic crystals is studied, which can meet the functions of XOR logic gate, magnetic field sensing and refractive index sensing. Modulating by the external magnetic fields, sharp transmission peak (TP) is obtained in the terahertz (THz) range (the value of TP is more than 0.9), by changing the two different magnetic fields applied to the particular medium layers, TP enables XOR logic phenomena at the same frequency point. Simulation shows that with the detection of physical quantities changes, the frequency point of TP will vary. Therefore, through the location of TP, the sensing functions of magnetic field and refractive index can be realized, moreover the optimum performances of quality factor (QF), sensitivity (S), the figure of merit (FOM), and the detection limit (DL) belonging to them are 1323.45, 0.01 (2πc/d 0)/T, 35.93 T−1, 1.39 × 10−3 T and 1381.88, −0.0061 (2πc/d 0)/RIU, 13.57 RIU−1, 3.7 × 10−3 RIU. Additionally, the device also realizes the non-reciprocity of electromagnetic waves (EWs) via the introduction of magneto-optical media InSb and the change of EWs incident angle, which means that XOR logic gate, magnetic field, and refractive index sensing detection respectively have positive and negative scales.
Read full abstract