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<titleInfo><title>Low-Noise Quantum Dots in Ultra-Shallow Ge/SiGe Heterostructures for Prototyping Hybrid Semiconducting-Superconducting Devices</title></titleInfo>





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  <namePart type="given">Maksim</namePart>
  <namePart type="family">Borovkov</namePart>
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  <namePart>Quantum bits with Kitaev Transmons</namePart>
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  <namePart>Center for Correlated Quantum Materials and Solid State Quantum Systems: Conventional  and unconventional topological superconductors</namePart>
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  <namePart>Merging spin and superconducting qubits in planar Ge</namePart>
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  <namePart>Realization and Manipulation of a Planar hybrid superconducting Andreev spin qubit in Germanium</namePart>
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  <namePart>Superconducting spin qubits in planar Ge</namePart>
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<abstract lang="eng">This deposit contains the data and analysis code accompanying the publication &quot;Low-Noise Quantum Dots in Ultra-Shallow Ge/SiGe Heterostructures for Prototyping Hybrid Semiconducting–Superconducting Devices&quot; (Borovkov et al.). The deposit includes the raw transport and current-noise measurements of three gate-defined quantum-dot devices as QCodes SQLite databases, the master table of the charge-noise (flank-method) analysis with the pointers linking every analyzed PSD trace to the raw data, the toy-model noise simulation datasets behind the supplementary figures, the archived analysis figures (PSD fits and lever-arm extractions), and the Python code reproducing the full analysis and all figures. The code is also maintained at https://github.com/ISTA-Nanoelectronics/noise_paper_public; instructions are provided in the README files.</abstract>

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<originInfo><publisher>Institute of Science and Technology Austria</publisher><dateIssued encoding="w3cdtf">2026</dateIssued>
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<relatedItem type="host"><identifier type="doi">10.15479/AT-ISTA-22242</identifier>
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     <url>https://github.com/ISTA-Nanoelectronics/noise_paper_public</url>
  
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<bibliographicCitation>
<apa>Borovkov, M. (2026). Low-Noise Quantum Dots in Ultra-Shallow Ge/SiGe Heterostructures for Prototyping Hybrid Semiconducting-Superconducting Devices. Institute of Science and Technology Austria. &lt;a href=&quot;https://doi.org/10.15479/AT-ISTA-22242&quot;&gt;https://doi.org/10.15479/AT-ISTA-22242&lt;/a&gt;</apa>
<chicago>Borovkov, Maksim. “Low-Noise Quantum Dots in Ultra-Shallow Ge/SiGe Heterostructures for Prototyping Hybrid Semiconducting-Superconducting Devices.” Institute of Science and Technology Austria, 2026. &lt;a href=&quot;https://doi.org/10.15479/AT-ISTA-22242&quot;&gt;https://doi.org/10.15479/AT-ISTA-22242&lt;/a&gt;.</chicago>
<ista>Borovkov M. 2026. Low-Noise Quantum Dots in Ultra-Shallow Ge/SiGe Heterostructures for Prototyping Hybrid Semiconducting-Superconducting Devices, Institute of Science and Technology Austria, &lt;a href=&quot;https://doi.org/10.15479/AT-ISTA-22242&quot;&gt;10.15479/AT-ISTA-22242&lt;/a&gt;.</ista>
<ama>Borovkov M. Low-Noise Quantum Dots in Ultra-Shallow Ge/SiGe Heterostructures for Prototyping Hybrid Semiconducting-Superconducting Devices. 2026. doi:&lt;a href=&quot;https://doi.org/10.15479/AT-ISTA-22242&quot;&gt;10.15479/AT-ISTA-22242&lt;/a&gt;</ama>
<ieee>M. Borovkov, “Low-Noise Quantum Dots in Ultra-Shallow Ge/SiGe Heterostructures for Prototyping Hybrid Semiconducting-Superconducting Devices.” Institute of Science and Technology Austria, 2026.</ieee>
<mla>Borovkov, Maksim. &lt;i&gt;Low-Noise Quantum Dots in Ultra-Shallow Ge/SiGe Heterostructures for Prototyping Hybrid Semiconducting-Superconducting Devices&lt;/i&gt;. Institute of Science and Technology Austria, 2026, doi:&lt;a href=&quot;https://doi.org/10.15479/AT-ISTA-22242&quot;&gt;10.15479/AT-ISTA-22242&lt;/a&gt;.</mla>
<short>M. Borovkov, (2026).</short>
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