differential phase contrast
**DPC** (Differential Phase Contrast) is a **STEM imaging technique that measures the deflection of the electron beam as it passes through the specimen** — revealing electric and magnetic fields within the sample by detecting asymmetric shifts in the diffraction pattern.
**How Does DPC Work?**
- **Segmented Detector**: A detector divided into 2 or 4 segments (or a pixelated detector for 4D-DPC).
- **Beam Deflection**: Electric/magnetic fields in the sample deflect the transmitted beam.
- **Difference Signal**: The difference between opposite detector segments is proportional to the beam deflection.
- **Field Mapping**: The deflection is proportional to the projected electric/magnetic field.
**Why It Matters**
- **Electric Field Imaging**: Directly visualizes electric fields at p-n junctions, interfaces, and ferroelectric domain walls.
- **Magnetic Imaging**: Maps magnetic domain structures at the nanoscale (in Lorentz mode).
- **Light Atoms**: DPC provides phase contrast sensitive to light elements, complementing HAADF.
**DPC** is **feeling the electromagnetic force** — detecting how nanoscale fields push the electron beam to map electric and magnetic structures.