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Experimental Demonstration of 5 Gbps Data Transmission Using Long Subwavelength Fiber at 140 GHz

机译:使用140 GHz长亚波长光纤进行5 Gbps数据传输的实验演示

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We present the experimental demonstration of real-time data transmission using a long subwavelength dielectric fiber in the Terahertz (THz) frequency range. A commercial 3D printing filament made of polypropylene material with the diameter of 1.75 mm is used as the solid core fiber for signal transmission. A photonics-based THz communication system operating at the carrier frequency of 140 GHz is used to characterize the fiber. The fiber is butt coupled in both emitter and detector antenna to minimize the free space coupling loss. The performance of the fiber is measured by recording the bit error rate (BER) for the transmitted data rate of 5 Gbps with a pattern length of 231-1. By fixing the decision threshold to 0 mV, the BER of 10-7 is recorded for the fiber length of 3 m and 5 m respectively at the emitter photocurrent value of 8 mA. A successful error free data transmission using a 1 m fiber with the diameter of 670 μm is demonstrated. In addition, the effect of bending in a graded index porous fiber made of low density polyethylene is also studied.
机译:我们目前在太赫兹(THz)频率范围内使用长亚波长介电纤维进行实时数据传输的实验演示。由直径为1.75 mm的聚丙烯材料制成的商用3D打印灯丝用作信号传输的实心芯纤维。使用以140 GHz载波频率运行的基于光子的THz通信系统来表征光纤。光纤在发射器和检测器天线中均对接耦合,以最大程度地减少自由空间耦合损耗。通过记录模式长度为2的5 Gbps传输数据速率的误码率(BER)来测量光纤的性能 31 -1。通过将决策阈值固定为0 mV,BER为10 -7 在发射器光电流值为8 mA时,分别记录了3 m和5 m的光纤长度记录。演示了使用直径为670μm的1 m光纤成功进行无错误的数据传输。另外,还研究了由低密度聚乙烯制成的渐变折射率多孔纤维的弯曲效果。

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