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On-chip, inverse-designed active wavelength division multiplexer at THz frequencies
Valerio Digiorgio1, Urban Senica2, Paolo Micheletti2
1Institute for Quantum Electronics, ETH Zürich, Zürich, Switzerland. vdigiorgio@phys.ethz.ch.
Nature Communications
|August 19, 2025
Summary
We developed an on-chip terahertz (THz) wavelength division multiplexer using quantum cascade lasers. This device enables advanced THz signal processing with broadband output ports and minimal crosstalk.
Area of Science:
- Photonics
- Terahertz (THz) technology
- Integrated optics
Background:
- Terahertz (THz) spectral range offers numerous applications but faces hardware design challenges.
- Development of photonic integrated components for THz frequencies is an active research area.
- On-chip signal processing in the THz range requires advanced component design.
Purpose of the Study:
- To demonstrate an on-chip, active wavelength division multiplexer (WDM) operating at THz frequencies (> 1 THz).
- To enable advanced on-chip signal processing in the THz range.
- To overcome hardware design challenges in THz photonic components.
Main Methods:
- Utilized inverse design topology optimization for WDM architecture.
- Embedded an active quantum cascade heterostructure in a double metal cavity, planarized with a polymer.
- Integrated the WDM with a THz quantum cascade laser (QCL) frequency comb.
- Outcoupled signals via integrated broadband patch array antennas for surface emission.
Main Results:
- Fabricated a strongly subwavelength device with a normalized volume of V/λ³ ≃ 0.5.
- Achieved three broadband output ports (2.2 THz-3.2 THz) with 330 GHz bandwidth each.
- Demonstrated a maximum crosstalk of -6 dB between output ports.
- Device operates as a stand-alone element for THz signal processing.
Conclusions:
- The developed on-chip THz WDM is a significant advancement in photonic integrated components.
- The device enables efficient THz signal processing and multiplexing.
- This technology unlocks new possibilities for applications in the terahertz spectral range.
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