Reflection type electronic control adjustable terahertz liquid crystal wave plate and preparing method thereof
A terahertz wave plate and reflective technology, which is applied in the field of terahertz optoelectronics, can solve the problems that the metal layer cannot meet the requirements, is difficult to achieve practicality, and has a small adjustable amount, and achieves good electric field distribution and control of liquid crystals. The effect of absorption loss and large modulation amount
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Embodiment 1
[0053] This embodiment is an example of a box of broadband tunable terahertz waveplates.
[0054] The specific structural design is attached figure 1 As shown, two quartz substrates 1 are provided with sub-wavelength metal wire grid 2 and metal mirror 3, optically controlled alignment layer 4 and liquid crystal material 5 of the liquid crystal cell respectively. The orientation direction of the controlled alignment layer is 90° to the direction of the metal wire grid. The liquid crystal material selected in this example is room temperature large birefringence liquid crystal NJU-LDn-4 (patent number: 2012103780326), the birefringence of this liquid crystal is about 0.30 at 0.5-2.5 THz, the calculation shows that to make the liquid crystal The cell achieves the effect of a tunable quarter-wave plate at 1THz, and the required minimum cell thickness is 25 μm.
[0055] In order to realize such a structure, the present invention (including the azo liquid crystal cell) can be prepa...
Embodiment 2
[0058] This embodiment shows the relationship between liquid crystal layers with different thicknesses and phase difference when the refractive index of the liquid crystal is 1.8. The specific structural design is attached figure 1 Shown, preparation mode is identical with embodiment 1. By changing the thickness of the liquid crystal layer, different phase modulations can be achieved for different wavelengths of terahertz waves. Such as Figure 6 As shown, the smaller the wavelength, the larger the phase difference. Corresponding to the terahertz wave of 400 μm, the thickness of the liquid crystal layer only needs to be 50 μm to achieve the effect of a half-wave plate.
Embodiment 3
[0060] When the thickness of the liquid crystal layer is 125 μm, the relationship between the refractive index and phase difference of different liquid crystals. The specific structural design is attached figure 1 Shown, preparation mode is identical with embodiment 1. By electronically changing the refractive index of liquid crystals, different phase modulations can be achieved for different wavelengths of terahertz waves. Such as Figure 7 As shown, the greater the change in the refractive index of the liquid crystal, the smaller the wavelength and the greater the phase difference. For the terahertz wave of 200 μm, when the refractive index of the liquid crystal is changed from 1.5 to 2.0, the dynamic adjustable range of its phase difference is from 0 to π, which can be realized from the linear polarization state to the circular polarization state, and then to the direction perpendicular to the original linear polarization. The polarization change of the linear polarizati...
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