Published October 15, 2024 | Version v1
Dataset Open

Tunable ultrabroadband hybrid terahertz emitter combining a spintronic and a GaSe source

  • 1. ROR icon Freie Universität Berlin
  • 2. ROR icon Forschungszentrum Jülich
  • 3. ROR icon Fritz Haber Institute of the Max Planck Society
  • 1. ROR icon Freie Universität Berlin
  • 2. ROR icon Universität Greifswald
  • 3. ROR icon Forschungszentrum Jülich

Description

We introduce a hybrid THz-source concept based on a spintronic THz emitter (STE) deposited onto a thin free-standing GaSe nonlinear crystal. By tuning the magnetic state and the phase-matching parameters of the hybrid emitter, we generate an ultrabroadband spectrum covering the full range from 1 to 40 THz. We achieve significantly enhanced spectral amplitudes above 10 THz compared to the bare STE, resulting in ultrashort THz-pulse durations down to 32 fs. Finally, we demonstrate the straightforward tunability of the shape of the few-cycle pulse from symmetric to antisymmetric. 

Files

figure2a.txt

Files (176.0 kB)

Name Size Download all
md5:77b7e04aa6a011c455f52e9adbd87f71
40.1 kB Preview Download
md5:1ac54efef7113ddce12581e817ce702d
164 Bytes Preview Download
md5:7cf8bfba8b51afa787622fa4a4332131
40.2 kB Preview Download
md5:299b0999884b4b7bf4af17f63dda62e4
3.4 kB Preview Download
md5:0a8daf44c377e88d69a107802956efc2
6.8 kB Preview Download
md5:5ab8705366cc2f6437a079ac168703f2
3.4 kB Preview Download
md5:de2ee2c7ca9ad3c5190ba0dc805bb969
6.8 kB Preview Download
md5:fd7157adcc73ffcfe7fddbbcf3858261
26.0 kB Preview Download
md5:ba505059040520db1515d69cc3bc9879
2.0 kB Preview Download
md5:d40e43d74bbca1c134e8e7e7acb88f7b
2.0 kB Preview Download
md5:441cb640d76f8f6cb72ead9af613a22b
2.0 kB Preview Download
md5:d6b33944ac04735be4b03957fb446ddd
2.0 kB Preview Download
md5:6a2af9429c06dcd834c624fe6c7b0352
3.3 kB Preview Download
md5:b16b6f22b6a36d76d3770bb0c55abde5
6.8 kB Preview Download
md5:f99c185a07f721a86d025c0ad897d0a5
17.6 kB Preview Download
md5:d4dc074e1a93511ec69c3213151e00f9
6.6 kB Preview Download
md5:9d65a90763cdaf5eebc6a219824b28f6
6.7 kB Preview Download

Additional details

Identifiers

Related works

Is published in
arXiv:2310.12012v1 (arXiv)

Funding

Federal Ministry of Education and Research
Palestinian-German Science Bridge (PGSB) 01DH16027

Dates

Accepted
2024-09-24

References

  • Appl. Phys. Lett. 125, 000000 (2024); doi: 10.1063/5.0226564