日本語

Topological high-order harmonic spectroscopy in Communications Physics

700
2024-01-15 17:07:40
翻訳を見る

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

関連のおすすめ
  • Lightmatter announces the first 16 wavelength bidirectional link on single-mode fiber

    Lightmatter, a Boston-based startup developing silicon photonics hardware aimed at AI and high-performance computing, has announced a 16-wavelength bidirectional Dense Wavelength Division Multiplexing optical link operating on one strand of standard single-mode (SM) fiber.Powered by Lightmatter’s Passage interconnect and Guide laser technologies, this development “shatters previous limitations in ...

    08-22
    翻訳を見る
  • The UK government plans £ 10.5 million to support laser wire feeding

    On the first day of the 2025 Paris Air Show, the UK government announced a £ 250 million investment to support sustainable aerospace programs, with £ 48.5 million earmarked for funding additive manufacturing projects led by Airbus and GKN Aerospace. Among them, £ 10.5 million will be injected into the GKN Integrated System Level Aerospace Structure Assembly (ISLAA) program, with the aim of utilizi...

    06-23
    翻訳を見る
  • Implementing and studying non Hermitian topological physics using mode-locked lasers

    A mode-locked laser is an advanced laser that can generate very short optical pulses with durations ranging from femtoseconds to picoseconds. These lasers are widely used for studying ultrafast and nonlinear optical phenomena, but they have also been proven to be applicable to various technological applications.Researchers at the California Institute of Technology have recently been exploring the ...

    2024-03-27
    翻訳を見る
  • Researchers have discovered a new method to improve the resolution of laser processing

    Customized laser beams focused through transparent glass can generate a small dot inside the material. Researchers from Northeastern University have reported a method of using this small spot to improve laser material processing and increase processing resolution.Their research results are published in the journal Optics Letters.Laser processing, like drilling and cutting, is crucial in industrie...

    2024-03-28
    翻訳を見る
  • Romania Center launches the world's most powerful laser

    Are you ready? The signal is out! "In the control room of a research center in Romania, engineer Antonio Toma has activated the world's most powerful laser, which is expected to make revolutionary progress in various fields from the health sector to space. The laser located in the center near the Romanian capital Bucharest is operated by the French company Thales and utilizes the invention of Nobe...

    2024-04-01
    翻訳を見る