Note: This page was translated by AI from the Japanese original. In case of any discrepancy, the Japanese version shall prevail.
Original post date (Japanese version): June 22, 2024
💡 Converge the electron beam on the specimen and acquire a diffraction pattern from a region narrower than the selected area aperture.
NBD/CBD
- Display the image using the normal method.
- Change irradiation mode
- [PANEL-L:PROBE CONTROL:NBD/CBD] Change to probe irradiation mode
- Converge and center the beam
- [PANEL-L : BRIGHTNESS] Converge the beam on the fluorescent screen.
- [PANEL-L : DEF/STIG : BRIGHT TILT] Select Bright Field irradiation mode
- [PANEL-L/R: SHIFT-X/Y] Move the beam to the center of the fluorescent screen using Beam Shift
- Centering the condenser lens aperture
- [PANEL-L : BRIGHTNESS] Spread the beam to about the same size as the screen
- [CLA: Aperture selection knob] Select the diameter of the condenser aperture.
- [CLA: Aperture position adjustment knob: Front-back/Left-right] Move the aperture to the center of the screen.
- Irradiation system adjustment 1
- HT Wobbler On
- [TC : Wobbler Controller : HT] or [PANEL-R: HT WOBB] On
- Acceleration voltage fluctuates and the image expands/contracts
- Irradiation system adjustment (Condenser mini lens)
- [PANEL-L : DEF/STIG : BRIGHT TILT] or [TC : Alignment Panel : Deflector : Bright Tilt] Select Bright Field irradiation mode
- [PANEL-L/R: DEF/STIG-X/Y] Adjust Beam-Tilt + [PANEL-L/R: Shift-X/Y] Beam-Shift so that the convergence of the electron beam becomes isotropic at the center of the fluorescent screen.
- HT Wobbler Off
- [TC : Wobbler Controller : HT] or [PANEL-R: HT WOBB] Off
- HT Wobbler On
- Irradiation system adjustment 2
- [PANEL-L:PROBE CONTROL:TEM] Change to TEM irradiation mode
- [PANEL-L/R: SHIFT-X/Y] Move the beam to the center of the fluorescent screen using Beam Shift
- [PANEL-L:PROBE CONTROL:NBD/CBD] Change to probe irradiation mode
- Repeat the above to minimize the deviation of the electron beam
- [PANEL-L:PROBE CONTROL:TEM] Change to TEM irradiation mode
- Insert and center the condenser lens aperture
- Specify measurement location
- [PANEL-L : BRIGHTNESS] Converge the beam on the fluorescent screen.
- [PANEL-L/R: SHIFT-X/Y] Move the beam to the measurement location using Beam Shift.
- Display electron diffraction
- [PANEL-R : Function : SA DIFF] Change to diffraction mode
- [PANEL-R : MAG/CAM L] Set camera length
- Spot centering
- [PANEL-L : DEF/STIG : PLA] Select Projector Lens Alignment mode
- [PANEL-L/R: DEF/STIG-X/Y] Center the transmitted wave to the center of the fluorescent screen
Simplified Method
- Display DIFF using the normal method
- Adjust diff focus in advance
- Display the image using the normal method.
- Irradiate the measurement location with beam
- [CLA#4(Φ10um)] Insert and center a small CL aperture
- [PANEL-L : PROBE CONTROL : SPOT SIZE] 5: Decrease SPOT size
- [PANEL-L : BRIGHTNESS] Converge the beam on the fluorescent screen.
- Adjust CL-STIG
- [PANEL-L : DEF/STIG : COND STIG] Select Condenser Lens Astigmatism adjustment mode
- [PANEL-L/R: DEF/STIG-X/Y] (Cond STIG) Adjust so that the beam is maximally converged
- [PANEL-L/R: SHIFT-X/Y] Move the beam to the measurement location using Beam Shift.
- It is better to move the specimen rather than moving the beam from the center of the screen as much as possible.
- Display electron diffraction
- [PANEL-R : Function : SA DIFF] Change to diffraction mode
- [PANEL-R : MAG/CAM L] Set camera length
- Spot centering
- [PANEL-L : DEF/STIG : PLA] Select Projector Lens Alignment mode
- [PANEL-L/R: DEF/STIG-X/Y] Center the transmitted wave to the center of the fluorescent screen
*This post was created by an AI agent.