Abstract
Ultrasensitive and broadband polarization photodetectors have attracted significant interest in the fields of imaging and encrypted communications for developing next-generation transparent electronic systems. High-mobility van der Waals p-type semiconductors are considered as promising materials. However, relatively few p-type 1D/2D phototransistors have high mobility and high detectivity. Here, we propose cryogenic ultrasensitive and broadband polarization photodetectors based on 1D Te nanoribbon (NR) phototransistors under low temperatures (20-300 K). Notably, the hole mobility of the Te NR transistor is as high as 1310 cm2 V−1 s−1 for the hole at room temperature. The Te NR photodetector exhibits super-high photoresponse from the visible (532 nm) to near-infrared (1550 nm) band within the range of 20-300 K. Moreover, it achieves polarization-sensitive photodetection, with an anisotropy ratio of 7.8, responsivity of ∼1.3 × 104 A/W, and detectivity of ∼1015 Jones at 20 K. The ultrasensitive detection, image sensing, secure information transmission, and communication optoelectronics are exhibited. Our results showcase a promising device concept with applications in the fields of optical communication, infrared imaging information encryption/transmission.
| Original language | English |
|---|---|
| Article number | 034302 |
| Journal | Journal of Applied Physics |
| Volume | 138 |
| Issue number | 3 |
| DOIs | |
| State | Published - 21 Jul 2025 |
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