Polski

Tailoring 'hollow' hydrogen molecule generation with two-color, bicircularly polarized laser pulses

488
2023-09-16 14:21:25
Zobacz tłumaczenie

Rydberg atoms and molecules are characterized by having one or more electrons in highly excited bound states. Such atoms and molecules are said to be in “Rydberg states” and are also called “hollow” atoms and molecules. Rydberg states are useful for studying various phenomena arising in intense light–matter interaction that involve electronic excitation with an intense laser pulse via optical processes like “multiphoton resonant excitation” and “frustrated tunneling ionization.”

In multiphoton resonant excitation, atoms or molecules are excited to Rydberg states through the absorption of multiple photons (units of electromagnetic radiation). In contrast, frustrated tunneling ionization-induced Rydberg states result from an interaction between the electron and the intense electric field of the laser. Thus, both the laser photon and the laser field jointly contribute to the Rydberg state excitation (RSE) process. However, the extent of the individual contributions of these two effects has not been experimentally determined so far.

Now, in a study published in Advanced Photonics, a team of researchers led by Professor Jian Wu from East China Normal University has developed an experimental method to isolate the effects of each mechanism in RSE.

Their method involves exciting hydrogen molecules to Rydberg states by controlling the photon effect and field effect using a bicircular two-color (BCTC) laser field, a type of laser field that is generated by combining two circularly polarized laser beams with different frequencies. Using two laser beams enabled the researchers to adjust the energy of the photons that are used to excite the hydrogen atoms.

 Additionally, by changing the helicity of the BCTC field, they were able to switch the electron recapture processes on and off, manipulating the field effect. Thus, they were able to generate Rydberg states while varying the extent to which each effect contributed to the process. The researchers then determined the extent to which the field excitation and photon absorption processes contributed to RSE by comparing the Rydberg state yields for different polarizations and photon counts.

“By finely adjusting the relative field strength of the two colors, we could manipulate the waveform of the laser field and the number of photons participating in the RSE processes and, in turn, the relative contributions of the field and photon effects,” explains Hongcheng Ni, the co-corresponding author of the work.

In their experimental setup, the BCTC laser fields were generated using the combination of a fundamental wave (FW) laser pulse and a second harmonic (SH) pulse with twice the fundamental frequency. These pulses were combined using a dichromatic mirror to generate either counter- or co-rotating two-color laser fields. These pulses were then focused on a supersonic jet of hydrogen gas inside a reaction microscope to create Rydberg states of hydrogen molecules.

The researchers found that increasing the relative strength of the SH field (with photons twice as energetic as the FW field) led to an overall increasing yield of Rydberg states, indicating an important role of the photon effect. Additionally, switching the polarization of the BCTC field from co-rotating to counter-rotating also led to an increase in the Rydberg state yield. The researchers attributed this observation to the suppression of the field effect for co-rotating fields.

The experimental study provides important insights into RSE in an intense laser field with potential implications for a wide range of fields, including quantum physics, chemistry, and astrophysics. “Rydberg atoms and molecules have the potential to serve as building blocks for advanced technologies related to quantum information, quantum nonlinear optics, long-range many-body interactions, and precision measurements. In this regard, our study can offer a promising route for manipulating and optimizing the RSE yields under intense laser field excitations,” says Wenbin Zhang, the first author and co-corresponding author of the work.

The promises held by hollow atoms certainly don’t ring hollow!

Source: SPIE

Powiązane rekomendacje
  • A new type of electrically driven organic semiconductor laser can be used in the fields of spectroscopy, metrology, and sensing

    According to a report from Maims Consulting, scientists at the University of St. Andrews in the UK recently stated that they have made a "significant breakthrough" in the decades of challenges in developing compact organic semiconductor laser technology.Firstly, an OLED with a world record light output was manufactured, and then integrated with a polymer laser structure. This new type of las...

    2023-10-07
    Zobacz tłumaczenie
  • How to precisely control the cavity length of gallium nitride based vertical cavity surface emitting lasers?

    Gallium nitride (GaN) vertical cavity surface emitting laser (VCSEL) is a semiconductor laser diode with broad application prospects in various fields such as adaptive headlights, retinal scanning displays, nursing point testing systems, and high-speed visible light communication systems. Their high efficiency and low manufacturing costs make them particularly attractive in these applications.Gall...

    2024-06-12
    Zobacz tłumaczenie
  • Van's updates the manufacturer of laser-cut parts

    Van's Aircraft has responded to reports of ruptured dented parts found in AirVenture's latest kit. These defects are caused by external suppliers changing the process of laser cutting parts. From February 2022 to June 2023, Van's moved some parts from traditional punch manufacturing to an outside supplier that can laser cut rivet holes. The move is designed to increase the company's throughput and...

    2023-08-04
    Zobacz tłumaczenie
  • The new Casiris H6 4K UST tricolor laser projector is about to be launched through Indiegogo

    Casir is about to launch the H6 4K UST tricolor laser projector through Indiegogo. The new laser projector has a brightness of up to 3000 ANSI lumens and a BT.2020 color gamut coverage of 110%. It is an ultra short focus projector that runs on Android TV.The Casiris H6 4K UST tricolor laser projector is a brighter and more accurate version of the Casiris A6. It also has greater image projection ca...

    2023-09-18
    Zobacz tłumaczenie
  • Making Infrared Light Visible: New Equipment Utilizes 2D Materials to Convert Infrared Light

    Infrared imaging and sensing technology can be used in various fields, from astronomy to chemistry. For example, when infrared light passes through a gas, sensing changes in light can help scientists identify specific properties of the gas. The use of visible light may not always achieve this sensing.However, existing infrared sensors are bulky and inefficient. In addition, due to the use of infra...

    2024-06-24
    Zobacz tłumaczenie