Christian Stolle
Papers
8
Total Citations
66
H-Index
6
About
Christian Stolle is a robotics and automation researcher whose work centers on micro- and nanoscale manipulation, robotic control systems, and the integration of advanced instrumentation for handling objects at previously inaccessible scales. His most significant contributions lie in the development of nanohandling robot cells — sophisticated systems that enable precise, automated manipulation of objects smaller than 10 micrometers within scanning electron microscope environments. Stolle has helped pioneer frameworks for full automation at the nanoscale, addressing critical challenges such as limited sensor feedback, calibration, and adaptable control architectures that can serve diverse manipulation scenarios. Among his most notable achievements is his work on remote microscale teleoperation using virtual reality and haptic feedback, enabling operators to manipulate microscale objects across distances of roughly 630 kilometers — a landmark demonstration of human-machine interaction at extreme scales. His research into automated separation and palletizing of microcomponents further extends the practical industrial relevance of these techniques. With contributions accumulating citations across robotics, nanotechnology, and microsystems communities, Stolle's body of work represents foundational progress toward reproducible, high-throughput nanomanufacturing processes that could underpin future advances in microsystem technology and beyond.
Research Focus
Key Achievements
Top Papers
- 1Remote microscale teleoperation through virtual reality and haptic feedback17 citations · 2011
- 2Development and control of a versatile nanohandling robot cell17 citations · 2007
- 3Towards Automated Robotic Nanomanipulation Systems9 citations · 2009
- 4Automated robot-based separation and palletizing of microcomponents7 citations · 2011
- 5
- 6Control System of an Automated Nanohandling Robot Cell6 citations · 2007
- 7Nanohandling automation as an emerging industrial technology2 citations · 2009
- 8Towards automated robot-based nanohandling2 citations · 2009