Wider frequency domain for negative refraction index in a quantized composite right-left handed transmission line
arXiv:1708.05054 · doi:10.1088/1674-1056/27/6/068102
Abstract
The refraction index of the quantized lossy composite right-left handed transmission line (CRLH-TL) is deduced in the thermal coherence state. The results show that the negative refraction index (herein the left-handedness) can be implemented by the electric circuit dissipative factors(i.e., the resistances \(R\) and conductances \( G\)) in a higher frequency band (1.446GHz\(\leqω\leq \) 15GHz), and flexibly adjusted by the left-handed circuit components (\(C_l\), \(L_l\)) and the right-handed circuit components (\(C_r\), \(L_r\)) at a lower frequency (\(ω\)=0.995GHz) . The flexible adjustment for left-handedness in a wider bandwidth will be significant for the microscale circuit design of the CRLH-TL and may make the theoretical preparation for its compact applications.
8 pages, 7 figures
References in corpus (7)
- Multimode circuit QED with hybrid metamaterial transmission lines
- Mesoscopic circuits with charge discreteness:quantum transmission lines
- Negative refraction with little loss manipulated by the voltage and pulsed laser in double quantum dots
- Adjusting the left-handedness in a cold Rb atom via multiple parameter modulation
- The manipulated left-handedness in a rare-earth-ion-doped optical fiber by the incoherent pumping field
- Negative refraction index of the mesoscopic left-handed transmission line in the thermal Fock state
- The thermal effect on the left-handedness of the mesoscopic composite right-Left handed transmission line