S. H. Kodati
Engineering · The Ohio State University
Publications
29
Citations
415
Est. group size
~7
Recurring co-author estimate
Active years
8
Publishing since 2018
S. H. Kodati's research focuses on avalanche photodiodes (APDs), which are highly sensitive light detectors used in applications like optical communications and infrared sensing. The work centers on developing new semiconductor material combinations (such as antimonide- and arsenide-based alloys on indium phosphide substrates) to create detectors with low electronic noise, high signal gain, and stable performance across temperatures. This research is relevant to students interested in semiconductor device physics, materials engineering, and optoelectronics.
Publication output grew steadily from 2017 to a peak around 2022, then declined somewhat through 2023-2025, though the last five years still show a relatively active average of about 3 papers per year.
Generated by claude-sonnet-5 from public bibliographic data · Jul 20, 2026
- Electrostatics in Engineering Photodiodes for Earth Observation Cameras
IntechOpen eBooks · 2025
- A comparative study of impact ionization and avalanche multiplication in InAs, HgCdTe, and InAlAs/InAsSb superlattice
Applied Physics Letters · 2024
- Very high gain and low noise GaAsSb/AlGaAsSb avalanche photodiodes for 1550nm detection at room temperature
2024
- InGaAs/AlInAsSb avalanche photodiodes with low noise and strong temperature stability
APL Photonics · 2023
- Anomalous excess noise behavior in thick Al0.85Ga0.15As0.56Sb0.44 avalanche photodiodes
Scientific Reports · 2023
- Ionization coefficients and excess noise characteristics of AlInAsSb on an InP substrate
Applied Physics Letters · 2023
- Low-Noise InGaAs/AlInAsSb Avalanche Photodiodes on InP Substrates
2023
- Material optimization for extended short-wavelength and mid-wavelength infrared avalanche photodiodes
2023
- High gain, low noise 1550 nm GaAsSb/AlGaAsSb avalanche photodiodes
Optica · 2022
- Random alloy thick AlGaAsSb avalanche photodiodes on InP substrates
Applied Physics Letters · 2022
- Impact Ionization Coefficients of Digital Alloy and Random Alloy Al<sub>0.85</sub>Ga<sub>0.15</sub>As<sub>0.56</sub>Sb<sub>0.44</sub> in a Wide Electric Field Range
Journal of Lightwave Technology · 2022
- Temperature Dependence of Avalanche Breakdown of AlGaAsSb and AlInAsSb Avalanche Photodiodes
Journal of Lightwave Technology · 2022
- Linear Mode Avalanche Photodiodes With Antimonide Multipliers on InP Substrates
IEEE Journal of Quantum Electronics · 2022
- Determination of the background doping polarity for unintentionally doped AlGaAsSb and AlInAsSb avalanche photodiodes on InP substrates
AIP Advances · 2022
- Avalanche multiplication and excess noise characteristics in antimony-based avalanche photodiodes
2022
- Applied Physics Letters×8
- Journal of Lightwave Technology×2
- Scientific Reports×2
- Optica×1
- APL Photonics×1
- Stephen Myers
Engineering · The Ohio State University
- Sanjay Krishna
Engineering · The Ohio State University
- Seunghyun Lee
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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