DOAJ Open Access 2025

Beyond Fiber: Toward Terahertz Bandwidth in Free-Space Optical Communication

Rahat Ullah Sibghat Ullah Jianxin Ren Hathal Salamah Alwageed Yaya Mao +4 lainnya

Abstrak

The rapid advancement of terahertz (THz) communication systems has positioned this technology as a key enabler for next-generation telecommunication networks, including 6G, secure communications, and hybrid wireless-optical systems. This review comprehensively analyzes THz communication, emphasizing its integration with free-space optical (FSO) systems to overcome conventional bandwidth limitations. While THz-FSO technology promises ultra-high data rates, it is significantly affected by atmospheric absorption, particularly absorption beyond 500 GHz, where the attenuation exceeds 100 dB/km, which severely limits its transmission range. However, the presence of a lower-loss transmission window at 680 GHz provides an opportunity for optimized THz-FSO communication. This paper explores recent developments in high-power THz sources, such as quantum cascade lasers, photonic mixers, and free-electron lasers, which facilitate the attainment of ultra-high data rates. Additionally, adaptive optics, machine learning-based beam alignment, and low-loss materials are examined as potential solutions to mitigating signal degradation due to atmospheric absorption. The integration of THz-FSO systems with optical and radio frequency (RF) technologies is assessed within the framework of software-defined networking (SDN) and multi-band adaptive communication, enhancing their reliability and range. Furthermore, this review discusses emerging applications such as self-driving systems in 6G networks, ultra-low latency communication, holographic telepresence, and inter-satellite links. Future research directions include the use of artificial intelligence for network optimization, creating energy-efficient system designs, and quantum encryption to obtain secure THz communications. Despite the severe constraints imposed by atmospheric attenuation, the technology’s power efficiency, and the materials that are used, THz-FSO technology is promising for the field of ultra-fast and secure next-generation networks. Addressing these limitations through hybrid optical-THz architectures, AI-driven adaptation, and advanced waveguides will be critical for the full realization of THz-FSO communication in modern telecommunication infrastructures.

Topik & Kata Kunci

Penulis (9)

R

Rahat Ullah

S

Sibghat Ullah

J

Jianxin Ren

H

Hathal Salamah Alwageed

Y

Yaya Mao

Z

Zhipeng Qi

F

Feng Wang

S

Suhail Ayoub Khan

U

Umar Farooq

Format Sitasi

Ullah, R., Ullah, S., Ren, J., Alwageed, H.S., Mao, Y., Qi, Z. et al. (2025). Beyond Fiber: Toward Terahertz Bandwidth in Free-Space Optical Communication. https://doi.org/10.3390/s25072109

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Informasi Jurnal
Tahun Terbit
2025
Sumber Database
DOAJ
DOI
10.3390/s25072109
Akses
Open Access ✓