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VIT_P/TERS
VIT_P/TERS

VIT_P/TERS

VIT_P/TERS/10
Set of 10 pieces
€2 900 +
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Product Description

TERS probes based on AFM Top Visual cantilevers provide TERS (and AFM) performance in Semicontact/Noncontact mode.

The probes provide guaranteed TERS performance on a test sample (organic molecules on Au substrate):
- Enhancement factor >50x (Tip IN vs. Tip. OUT) for ~70% of probes. Typical enhancement factor : > 100x. Some probes reach >500x enhancement.
- TERS (nano-Raman mapping). ~20-70 nm resolution. >50% of probes.
- Remarkable lifetime without considerable enhancement degradation
The specified parameters are guaranteed only on the TERS sample – TERS_S.
Cantilevers  lifetime is 3 months.

Probes are guaranteed to work on the NT-MDT AFM-Raman system with the following system requirements:
(i) Confocal Raman microscope (OMUxxx series), 633 nm gas laser (LM633 series), Optical AFM head (SNAxxx series), Laser scanning module (SIO01) with corresponding controller. If this requirement is not fulfilled, TERS probes can only be supplied without any performance guaranty – “as is”.

Probes can be supplied for equipment from other manufacturers without any perfomance guarantee.

TOP VISUAL High Resolution Semicontact / Noncontact Silicon AFM Cantilevers VIT_P series are specially designed for tip or laser spot precise positioning over the point of interest.
Typical Resonant Frequency 335 kHz (guaranteed range 210-490 kHz), Typical Force Constant 45 N/m (guaranteed range 12-110 N/m). 
Cantilevers have no coating. Probes are also available with Au reflective coating as well as with conductive tip coating.
Probes are packed in boxes with 7 and 10 pieces.

General Features

Material Single Crystal Silicon, N-type, 0.01-0.025 Ohm-cm, Antimony doped
Chip size 3.4x1.6x0.3mm
Reflective side coating No
Tip curvature radius < 35 nm

Special Features

Cantilever series Cantilever length, L±10µm Cantilever width, W±5µm Cantilever thickness, T±0.5µm Resonant frequency, kHz Force constant, N/m
min typical max min typical max
VIT_P 160 45 4.6 210 335 490 12 45 110
 

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