Polski

Topological high-order harmonic spectroscopy in Communications Physics

846
2024-01-15 17:07:40
Zobacz tłumaczenie

It is reported that researchers from the University of Salamanca in Spain have demonstrated a high-order harmonic spectroscopy scheme generated by the interaction between a structured driving beam and a crystal solid target. This work promotes the topological analysis of high-order harmonic fields as a spectroscopic tool to reveal nonlinearity in the coupling of light and target symmetry. The relevant paper was published in Communications Physics under the title of "Topological high molecular spectroscopy copy".

High order harmonic generation (HHG) is an extreme nonlinear effect that occurs when a strong field laser is focused on a gas medium, resulting in hundreds of orders of high-energy harmonic photons.

In the paper, researchers demonstrated the high-order harmonic spectroscopy scheme generated by the interaction between structured driving beams and crystal solid targets. Unlike isotropic gas targets, researchers have demonstrated the coupling of crystal symmetry with the driving beam topology during high-order harmonic generation (HHG) processes. This coupling feature is encoded into a complex spatial structure that emits harmonics. In particular, researchers have revealed this interwoven photon conversion by studying the HHG of monolayer graphene driven by LPVB.

Figure 1: Overview of topological high-order harmonic spectra in graphene and argon gas.

Figure 2: Far field harmonic emission curves of circularly polarized components on the left (LCP) and right (RCP) sides.

Figure 3: Comparison of orbital angular momentum (OAM) carried by high-order harmonics emitted from anisotropic and isotropic targets.

Researchers have found that, unlike isotropic cases, the harmonics generated by crystal targets can break the conservation of the driving topology based on their compositional symmetry. Researchers have provided an analytical derivation that can (1) predict the topology of high-order harmonic beams from the anisotropic symmetry of the target, and (2) retrieve the anisotropic response of the target from the topology of high-order harmonic beams. Therefore, high-order harmonic spectroscopy based on topological structure can extract spatial resolution information of target nonlinear response, which cannot be obtained by standard spectroscopy techniques.

Figure 4: Near field harmonic emission profiles obtained in anisotropic and isotropic targets.

Figure 5: Retrieve nonlinear response from topological harmonic characteristics.

Although researchers have demonstrated the interaction between the topological structure of vector beam drivers and target symmetry in two-dimensional materials such as graphene, they believe that their research results open up a universal scenario for topological optics, where the non-linear response of the target is coupled with the topological structure of light. Researchers believe that this technology can be further used to characterize more complex targets, such as polycrystalline or heterostructures.

Source: Sohu

Powiązane rekomendacje
  • DLR and Tesat laser terminals pave the way for high-speed data transmission from space

    Due to the surge in the deployment of small satellites, the increasing congestion of data transmission has always been a persistent problem in the aerospace industry. The collaboration between the Communication and Navigation Research Institute of the German Aerospace Center and Tesat Spacecom GmbH and Co. KG TESAT provides a powerful solution. They successfully developed and tested OSIRIS4CubeSat...

    2023-11-02
    Zobacz tłumaczenie
  • Fujitsu collaborates to research and develop multi band wavelength fiber optic transmission technology

    Recently, Fujitsu and KDDI research company have successfully developed a high-capacity multi band wavelength multiplexing transmission technology using installed optical fibers.The new technology of the two companies can transmit wavelengths beyond the C-band by using batch wavelength conversion and multi band amplification technology.Expanding transmission capacity in remote areasTwo companies h...

    2023-12-05
    Zobacz tłumaczenie
  • Progress in the Application of China University of Science and Technology's Femtosecond Laser Processing Technology in the Biomedical Field

    Recently, Associate Professor Li Jiawen's research group at the Micro and Nano Engineering Laboratory of the School of Engineering Science, University of Science and Technology of China proposed a femtosecond laser dynamic holographic processing method suitable for efficient construction of three-dimensional capillary scaffolds, which is used to generate a three-dimensional capillary network. This...

    2024-02-11
    Zobacz tłumaczenie
  • X photon 3D nanolithography

    Virtual and Physical Prototypes: X-ray laser direct writing 3D nanolithography.Multi-photon polymerization (MPP), also known as 3D nanoprinting, has been investigated using wavelength-tunable femtosecond lasers. At a fixed pulse width of 100 fs, any spectral color in the range of 500nm to 1200nm can be used, which reveals the interaction of more subtle photophysical mechanisms than two-photon phot...

    2023-09-11
    Zobacz tłumaczenie
  • Ultraviolet spectroscopy: a leap in accuracy and precision under extremely low light levels

    Ultraviolet spectroscopy plays a crucial role in the study of electronic transitions in atoms and rovibronic transitions in molecules. These studies are crucial for the testing of fundamental physics, quantum electrodynamics theory, determination of fundamental constants, precision measurements, optical clocks, high-resolution spectroscopy supporting atmospheric chemistry and astrophysics, and str...

    2024-03-08
    Zobacz tłumaczenie