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3D Atomic Mapping of Interfacial Roughness and Its Spatial Correlation  Length in Sub-10 nm Superlattices | ACS Applied Materials & Interfaces
3D Atomic Mapping of Interfacial Roughness and Its Spatial Correlation Length in Sub-10 nm Superlattices | ACS Applied Materials & Interfaces

3D Atomic Mapping of Interfacial Roughness and Its Spatial Correlation  Length in Sub-10 nm Superlattices | ACS Applied Materials & Interfaces
3D Atomic Mapping of Interfacial Roughness and Its Spatial Correlation Length in Sub-10 nm Superlattices | ACS Applied Materials & Interfaces

Single charge sensing and transport in double quantum dots fabricated from  commercially grown Si/SiGe heterostructures: Applied Physics Letters: Vol  100, No 4
Single charge sensing and transport in double quantum dots fabricated from commercially grown Si/SiGe heterostructures: Applied Physics Letters: Vol 100, No 4

The various scenarios of field size and orientation with (a) large... |  Download Scientific Diagram
The various scenarios of field size and orientation with (a) large... | Download Scientific Diagram

Scattering Mechanisms in Shallow Undoped Si/SiGe Quantum Wells
Scattering Mechanisms in Shallow Undoped Si/SiGe Quantum Wells

Frontiers | Progress of Platelet Derivatives for Cartilage Tissue  Engineering
Frontiers | Progress of Platelet Derivatives for Cartilage Tissue Engineering

Materials | Free Full-Text | InAs/GaAs Quantum Dot Microlasers Formed on  Silicon Using Monolithic and Hybrid Integration Methods
Materials | Free Full-Text | InAs/GaAs Quantum Dot Microlasers Formed on Silicon Using Monolithic and Hybrid Integration Methods

Model agreement regarding the total area (connected and unconnected)... |  Download Scientific Diagram
Model agreement regarding the total area (connected and unconnected)... | Download Scientific Diagram

References For: Phys. Rev. X 8, 021058 (2018) - Logical Qubit in a Linear  Array of Semiconductor Quantum Dots
References For: Phys. Rev. X 8, 021058 (2018) - Logical Qubit in a Linear Array of Semiconductor Quantum Dots

Preparation of distilled and purified continuous-variable entangled states  | Nature Physics
Preparation of distilled and purified continuous-variable entangled states | Nature Physics

3D Atomic Mapping of Interfacial Roughness and Its Spatial Correlation  Length in Sub-10 nm Superlattices | ACS Applied Materials & Interfaces
3D Atomic Mapping of Interfacial Roughness and Its Spatial Correlation Length in Sub-10 nm Superlattices | ACS Applied Materials & Interfaces

Frontiers | The Importance of Biophysical and Biochemical Stimuli in  Dynamic Skeletal Muscle Models
Frontiers | The Importance of Biophysical and Biochemical Stimuli in Dynamic Skeletal Muscle Models

Recent advances in biofabrication strategies based on bioprinting for  vascularized tissue repair and regeneration - ScienceDirect
Recent advances in biofabrication strategies based on bioprinting for vascularized tissue repair and regeneration - ScienceDirect

Gelatin–genipin‐based biomaterials for skeletal muscle tissue engineering -  Gattazzo - 2018 - Journal of Biomedical Materials Research Part B: Applied  Biomaterials - Wiley Online Library
Gelatin–genipin‐based biomaterials for skeletal muscle tissue engineering - Gattazzo - 2018 - Journal of Biomedical Materials Research Part B: Applied Biomaterials - Wiley Online Library

Sensors | Free Full-Text | Finding Possible Weakness in the Runoff  Simulation Experiments to Assess Rill Erosion Changes without  Non-Intermittent Surveying Capabilities
Sensors | Free Full-Text | Finding Possible Weakness in the Runoff Simulation Experiments to Assess Rill Erosion Changes without Non-Intermittent Surveying Capabilities

Palladium gates for reproducible quantum dots in silicon | Scientific  Reports
Palladium gates for reproducible quantum dots in silicon | Scientific Reports

Scattering Mechanisms in Shallow Undoped Si/SiGe Quantum Wells
Scattering Mechanisms in Shallow Undoped Si/SiGe Quantum Wells

Materials | Free Full-Text | InAs/GaAs Quantum Dot Microlasers Formed on  Silicon Using Monolithic and Hybrid Integration Methods
Materials | Free Full-Text | InAs/GaAs Quantum Dot Microlasers Formed on Silicon Using Monolithic and Hybrid Integration Methods