Italiano

Holographic Laser Processing: Rapid Manufacturing and Image Reconstruction of Artificial Biomimetic Compound Eyes

103
2023-10-25 15:17:13
Vedi traduzione

Introduction
In recent years, inspired by insect compound eyes, artificial biomimetic compound eyes have shown great advantages in overcoming the limitations of existing imaging devices such as large, bulky, and heavy, and improving the performance of medical endoscopy, panoramic imaging, micro navigation, and robot vision due to their unique optical imaging solutions such as small size, distortion free imaging, wide field of view, and highly sensitive motion tracking capabilities, attracting increasing attention.

The existing artificial biomimetic compound eye manufacturing mainly faces two challenges: firstly, the existing process is relatively complex, with limited manufacturing efficiency and difficulty in meeting commercial standards; The second issue is that the surface characteristics of the artificial biomimetic compound eye do not match those of commercial planar imaging sensors, making it difficult to integrate the two.

In view of this, Professor Chen Qidai from Jilin University proposed a wet assisted holographic laser processing method, which greatly improves the processing efficiency of artificial biomimetic compound eyes by customizing the preparation of biomimetic compound eyes and large-scale transcription. At the same time, combined with artificial intelligence methods, it solves the problem of mismatch between artificial biomimetic compound eyes and planar imaging sensors from an algorithmic perspective.

This research achievement is based on the "Holographic laser fabric of 3D artistic compound μ- Eyes ", published online in Light: Advanced Manufacturing.

Figure 1: Flow chart of wet assisted femtosecond laser parallel manufacturing of artificial biomimetic compound eyes

In the experiment, femtosecond laser without spatial light field modulator (SLM) modulation was first used to expose the surface of quartz substrate, and a compound eye main lens was formed using wet etching method; Utilizing SLM to split femtosecond laser beams and combining wet etching to achieve parallel processing of multiple small eyes in the compound eye; The large-scale production of compound eye microlens arrays can be achieved through PDMS micro/nanostructure transcription technology. The compound eye microlens array prepared by this method has the characteristics of high resolution and wide field of view. To overcome the difficulty of integrating artificial biomimetic compound eyes with planar cameras, high-quality image reconstruction was achieved through the use of generative adversarial networks (GAN), laying the foundation for future device integration.

 


Figure 2: Sample image of large-scale manufacturing of artificial biomimetic compound eyes
The complex optical devices manufactured by holographic laser processing technology are scalable. To address the complexity and time-consuming nature of the process, Figure 2 shows the large-scale production of polydimethylsiloxane (PDMS) soft micro optical components using quartz glass based compound eye microlenses as hard templates. During this process, the micro optical components still maintained high surface quality (as shown in SEM image 2a and 3D depth of field image 2b).

Figure 3: Image reconstruction based on generative adversarial network (GAN) deep learning algorithm
The curved contour gives the compound eye a wide field of view, but it also limits its focus position and can only be positioned on a curved focal plane. For a true biological compound eye, there is a fiber optic cable that can receive light and direct it into the retina. However, it is difficult to be compatible with current sensor programs, and it is also difficult to integrate optical components and detectors on the chip. In theory, the parameters of each small lens, including height, curvature, and focal length, should be redesigned, but it is difficult to determine the plane based on its position on the curve contour. To this end, we propose a deep learning algorithm based on generative adversarial networks (GAN) for image processing. In this study, we utilized two neural networks to maximize the generation ability of the discriminator and minimize its loss function, while the discriminator was trained to maximize its loss function. As shown in Figure 3a, after training, the neural network can use the image shown in Figure 3c to perform image restoration on all eyes. Image restoration is independent of incident wavelength, material refractive index, or single lens thickness. With this technology, compound eye imaging can preserve a large field of view and significantly improve image quality, making it suitable for a wider range of application scenarios (Figure 3b).

This study proposes an efficient femtosecond holographic laser method for preparing artificial biomimetic compound eyes, introducing artificial intelligence methods for reverse image reconstruction, solving the pain point problem of low manufacturing efficiency of artificial biomimetic compound eyes, and laying the foundation for future matching and integration of artificial biomimetic compound eyes with planar imaging sensors.

Paper Information
Lei Wang, Wei Gong, Xiao-Wen Cao, Yan-Hao Yu, Saulius Juodkazis, Qi-Dai Chen. Holographic laser fabrication of 3D artificial compound μ-eyes[J]. Light: Advanced Manufacturing 4, 26(2023).

https://doi.org/10.37188/lam.2023.026

Source: Advanced Manufacturing

Raccomandazioni correlate
  • Snapmaker introduces new 20W and 40W laser modules

    Snapmaker has opened pre-orders for 20W and 40W laser modules, which are significant upgrades to the modules available on existing Snapmaker machines.Snapmaker says that with the 40W module installed, you will be able to cut 15 mm basswood plywood at a time at a speed of 20 mm/SEC. With 20W, you will cut 10mm at a rate of 10mm/SEC. That's a lot more than Artisan and Snapmaker 2.0 - both are comp...

    2023-08-04
    Vedi traduzione
  • Transforming solid-state single photon sources using multifunctional metalenses

    Quantum photonics is one of the important research directions in the quantum field, which utilizes the unique properties of light at the quantum level. The core of this field is the deterministic single photon source, which sequentially emits individual photons through spontaneous emission and is the cornerstone of quantum communication, computing, and secure encryption. However, under environment...

    2024-02-26
    Vedi traduzione
  • Nanchang University has made progress in intelligent photoacoustic tomography imaging

    Photoacoustic tomography (PAT) is a novel hybrid medical imaging technique that enables precise imaging of biological tissue structures at different spatial scales. It has been widely used in various fields, including brain imaging, cancer detection, and cardiovascular disease diagnosis. However, due to limitations in data acquisition conditions, photoacoustic tomography systems typically can only...

    2024-08-13
    Vedi traduzione
  • Tsinghua University develops efficient and stable perovskite quantum dot deep red light devices

    Semiconductor quantum dots have the advantages of high quantum yield, narrow emission spectrum, and compatibility with solution processes. They have shown broad application prospects and enormous economic value in the field of optoelectronic materials and devices, and related research has won the Nobel Prize in Chemistry in 2023.Compared with traditional II-VI and III-V quantum dots (such as CdSe,...

    03-18
    Vedi traduzione
  • The semiconductor laser market is expected to reach $5.3 billion by 2029

    Nowadays, laser technology is widely used in various traditional and emerging fields, including optical communication, material processing, consumer equipment, automotive sensing and lighting, display technology, medical applications for treatment and diagnosis, as well as aerospace and defense.Especially in the semiconductor laser market, it is expected to grow from $3.1 billion in 2023 to $5.2 b...

    2024-12-03
    Vedi traduzione