Sanjay Krishna
Engineering · The Ohio State University
Publications
678
Citations
12,492
Est. group size
~17
Recurring co-author estimate
Active years
28
Publishing since 1999
Sanjay Krishna's research focuses on infrared and mid-infrared semiconductor detectors, including avalanche photodiodes and photodiode structures made from materials like InGaAs, GaAsSb, and GeSn, aimed at applications such as optical communication, sensing, and imaging. Work also involves integrating these specialized semiconductor materials with silicon and other substrates to improve manufacturability and performance. The group additionally explores some device engineering topics beyond core detector work, such as heterogeneous integration techniques and detector noise characterization.
Publication output has remained fairly steady over the last decade, averaging around 14-20 papers per year with no clear upward or downward trend.
Generated by claude-sonnet-5 from public bibliographic data · Jul 20, 2026
- InGaAs and GaAsSb PIN nanowire arrays with large absorption around 1.55 <i>µ</i> m for room temperature infrared applications
Journal of Physics Photonics · 2026
- Demonstration of mid-wave and long-wave resonant cavity infrared detectors at SK Infrared
2026
- Midinfrared Semiconductor Photonics – A Roadmap
2025
- Midinfrared Semiconductor Photonics – A Roadmap
2025
- Structural and electrical characterization of short-wave infrared GeSn diodes [Invited]
Optical Materials Express · 2025
- Dual-Sacrificial-Layer Wet Etching for Transfer Printing of InP-Based Antimony-Containing Materials
ECS Journal of Solid State Science and Technology · 2025
- Effect of Multiplication and Charge Layers on the Gain in InGaAsSb/AlGaAs Avalanche Photodiodes at Room Temperature
Sensors · 2025
- Heterogeneous integration of GaAsSb and silicon via direct wafer bonding for high-speed avalanche photodiodes
2025
- Heterogeneous integration of InGaAs/GaAsSb superlattices with Si for e-SWIR sensors
2025
- Impact ionization coefficients and excess noise characteristics of <i>Al0.85Ga0.15As0.07Sb0.93</i> on GaSb substrate
Applied Physics Letters · 2025
- A VLSI‐Based Multi‐Level ECG Compression Scheme with RL and VL Encoding
2025
- Carrier transport using temperature dependent measurements in antimony-based avalanche photodiodes
2025
- Investigation of background doping and polarity in the unintentionally doped layer of PIN Ge0.91Sn0.09 photodiodes on Si substrate
2025
- Engineering of superlattice-based avalanche photodiodes
Semiconductors and semimetals · 2025
- Defect spectroscopy of MBE-grown GaAs0.51Sb0.49 pin infrared detectors on InP substrates
Applied Physics Letters · 2025
- Applied Physics Letters×17
- arXiv (Cornell University)×6
- Optics Express×4
- Journal of Applied Physics×4
- Scientific Reports×4
- S. H. Kodati
Engineering · The Ohio State University
- Stephen Myers
Engineering · The Ohio State University
- W. J. Choi
Physics and Astronomy · The Ohio State University
- Hyemin Jung
Physics and Astronomy · The Ohio State University
- James E. Toney
Engineering · The Ohio State University
This profile was generated automatically from public scholarly data (OpenAlex). Group size and activity levels are estimates derived from co-authorship patterns.
Last updated Jul 19, 2026.
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