THz transmission setup with different stages of completeness
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     Quantity  | 
    
     Description  | 
    
     
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     1  | 
    
     1 piece  | 
    
     THz transmission setup for 780 nm femtosecond laser, consisting of: · THz emitter and detector photoconductive antennas, including aspheric optical focusing lenses for optical laser beam and hyperhemispherical silicon substrate lenses for THz beam · 4 parabolic mirrors with 50 mm diameter and 50 mm focus length · breadboard 600 mm x 450 mm x 50.8 mm with the adjusted and tested THz antennas and mirrors · description of the setup with test report and with marked positions on the breadboard for the needed additional optical parts 
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     2  | 
    
     1 piece  | 
    
     THz transmission setup for 780 nm femtosecond laser, consisting of: · THz emitter and detector photoconductive antennas, including aspheric optical focussing lenses for optical laser beam and aspheric focusing silicon substrate lenses for THz beam with 50 mm focus length. The performance of this setup is the same as in Pos. 1 · breadboard 600 mm x 450 mm x 50.8 mm with the adjusted and tested THz antennas. The THz antenna distance is 100 mm. The THz focus is in on the midpoint between the antennas · description of the setup with test report and with marked positions on the breadboard for the needed additional optical parts 
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     3  | 
    
     1 piece  | 
    
     Complete optical THz transmission time-domain spectrometer setup for 780 nm femtosecond laser, consisting of: · THz emitter and detector photoconductive antennas, including aspheric optical focussing lenses for optical laser beam and aspheric focusing silicon substrate lenses for THz beam with 50 mm focus length · optical delay line with 150 mm displacement for delay of 1 ps · Beam splitter for fs-laser and 4 mirrors for optical alignment of the complete THz setup · breadboard 600 mm x 450 mm x 50.8 mm with the adjusted and tested optical elements for the complete THz spectrometer. The THz antenna distance is 100 mm. The THz focus is on the midpoint between the antennas · description of the THz setup with test report  | 
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     4  | 
    
     1 piece  | 
    
     Complete THz transmission time-domain spectrometer for 780 nm femtosecond laser, consisting of: · Complete THz transmission setup as described in Pos. 3 · Pulse generator as power supply for the emitter, preamplifier, which is integrated in the detector, and lock-in amplifier. The supply voltage for these electronic devices is 115 .. 230 V. · Computer with spectrometer software for time-domain THz spectroscopy. The software allows measurement of THz pulse and calculates in-situ the THz spectrum. It includes the calibration procedures for 100 % transmittance and the calculation of the spectral transmittance and absorbance of a sample. · Instruction manual for the THz spectrometer and test report  | 
    
Data 
sheet for THz transmission spectrometer
with 780 nm fs laser with pulse duration < 120 fs and mean optical output power 
> 50 mW 
mean THz power PTHz ~ 5 µW
THz signal/noise amplitude 104
useful spectral region 0.05 – 2.5 THz
THz focus position 50 mm away from the antennas
Fast scan duration 10 s
Slow scan duration 8 min (resolution 
Δν 
= 2.5 GHz, 200 ps scan) 
    THz products:
    
    THz Spectrometer kit with Antenna
    THz 
    transmission setup
    THz detectors: Golay cell and 
    LiTaO3 piroelectric detectors
PCA - Photoconductive 
Antenna as THz photomixer
    Pacifica THz Time Domain Spectrometer 
    -
    
    Trestles Pacifica
    Holographic Fourier Transform Spectrometer for THz Region
Wedge TiSapphire Multipass Amplifier System -
THz pulses generation
Terahertz Spectroscopic Radar Mobile System 
for Detection of Concealed Explosives
Band pass filters 
with center wavelengths from 30 THz into GHz range
Long pass filters 
with standard rejection edge wavelengths from 60 THz into GHz range
    
    Generation of THz radiation using lithium niobate
    Terahertz crystals (THz): 
ZnTe,
    GaP,
    
    LiNbO3 - Wedge ZnTe
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    Terahertz Spectroscopy: Principles and Applications (Optical 
    Science and Engineering) ~ Susan L. Dexheimer The development 
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    in physics, materials science, chemistry, and biomedicine.   | 
  
Principles of Terahertz Science and Technology (Lecture Notes in Physics) ~ Yun-Shik Lee Principles of Terahertz 
    Science and Technology aims to elucidate the fundamentals of THz technology 
    and science for potential new users. It surveys major techniques of 
    generating, detecting, and manipulating THz waves and also discusses a 
    number of essential processes where THz waves interact with physical, 
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    technology for new researchers in various fields.  | 
  |
Terahertz Science And Technology For Military And Security Applications (Selected Topics in Electronics and Systems) ~ Dwight L. Woolard The inherent advantages and potential payoffs of the 
    terahertz (THz) regime for military and security applications serve as an 
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    closely linked to the potential payoffs of THz sensing and imaging 
    (THz-S&I).  | 
  |
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     The book presents recent and important developments in the field of terahertz radiation with a particular focus on pulsed terahertz radiation. Situated in the gap between electronics and optics, the terahertz frequency range of the electro-magnetic spectrum has long been neglected by scientists and engineers due to a lack of efficient and affordable terahertz sources and detectors. The advent of femtosecond lasers in the 1980s and photoconductive switches in 1984 have made the terahertz gap accessible, while at the same time advances in electronics and optics have made it narrower. Research activities in terahertz frequencies have risen dramatically since that time, funding has increased by a factor of 100 in the last decade. The reviews by leading experts are of interest to researchers and engineers as well as advanced students.  | 
  |
| Intense Terahertz Excitation of Semiconductors ~ S. G. 
    Ganichev Product DescriptionIntense Terahertz Excitation of 
    Semiconductors presents the first comprehensive treatment of high-power 
    terahertz applications to semiconductors and low-dimensional semiconductor 
    structures. Terahertz properties of semiconductors are in the center of 
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Terahertz Frequency Detection and Identification of Materials and Objects ~ R.E. Miles Terahertz frequency sensing has 
    a unique part to play in the detection and identification of materials and 
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Band pass filters with center wavelengths from 30 THz into GHz range
Long pass filters with standard rejection edge wavelengths from 60 THz into GHz range

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