Position Description
- Λειτουργία και βελτιστοποίηση υπαρχουσών πειραματικών διατάξεων οπτικής πολωσιμετρίας. Ανάπτυξη και υλοποίηση καινοτόμων πειραματικών τεχνικών για την βελτίωση της ευαισθησίας τους.
- Καταγραφή και επεξεργασία πειραματικών δεδομένων, και συγγραφή επιστημονικών αναφορών και άρθρων.
- Ανάπτυξη και υλοποίηση διατάξεων ηλεκτρονικών κυκλωμάτων και λογισμικού ελέγχου συσκευών με σκοπό την αυτοματοποίηση και την ακριβέστερη παραμετροποίηση των πειραμάτων.
Related Project
HANDCORE -Required Qualifications
Κωδικός Θέσης Α.2.2.1
- Πτυχίο Φυσικής, Επιστήμης Υλικών, Πολυτεχνικής σχολής συναφούς ειδικότητας και Μεταπτυχιακός τίτλος σε σχετικό πεδίο
- Πειραματική ερευνητική εμπειρία σε εργαστήριο οπτικής/laser
- Πτυχίο Φυσικής, Επιστήμης Υλικών, Πολυτεχνικής σχολής συναφούς ειδικότητας
- Καλή γνώση Αγγλικών
Desirable Qualifications
Κωδικός Θέσης Α.2.2.1
- Άριστη γνώση Αγγλικών
- Γνώσεις υπολογιστών και προγραμματισμού (π.χ. κάποια/ες από Mathematica, Matlab, LabView, FPGA programming, Python, C# ή άλλες γλώσσες)
- Γνώσεις ηλεκτρικών και ηλεκτρονικών κυκλωμάτων και διατάξεων
- Πειραματική ερευνητική εμπειρία σε εργαστήριο οπτικής/laser
- Γνώσεις υπολογιστών και προγραμματισμού (π.χ. κάποια/ες από Mathematica, Matlab, LabView, FPGA programming, Python, C# ή άλλες γλώσσες)
- Γνώσεις ηλεκτρικών και ηλεκτρονικών κυκλωμάτων και διατάξεων
Application Procedure
Στο φάκελο υποβολής της πρότασης θα πρέπει να εμπεριέχονται τα ακόλουθα:
- Αίτηση με αναφορά στον κωδικό της θέσης και στο όνομα του προγράμματος
- Αναλυτικό Βιογραφικό Σημείωμα
- Ευκρινή φωτοαντίγραφα τίτλων σπουδών
- Πρόσφατη βεβαίωση σπουδών (θα πρέπει να προσκομισθεί πριν την έναρξη της σύμβασης)
Appointment Duration
16 μήνεςFunding

Position Description
One Research Assistant in the evaluation and characterisation of laser-processed cornea implants.
For the full announcement, follow the link "Related Documents"
Required Qualifications
- BSc in Biology or Medical Sciences (30%)
- Experience in the position topic (40%)
- Publications in the topic (30%)
Application Procedure
In order to be considered, the application must include:
- Completed application Form (Download link to the left)
- Brief CV
- Scanned copies of academic titles
- Reference letters (if required)
- All required forms and documents as layed out in each Job opening description
Please send your application and all documents to: hr@iesl.forth.gr and cc the Scientific supervisor marked in the left column
Appointment Duration
5 monthsAbstract
- Ø2’’ Protected Silver Mirror,10 Pack,quantity:1
- Sapphire window 25.4mm dia., 5mm thick, Uncoated , quantity:1
- D=25.4 F=300.0 N-BK7 B Coated Plano Convex Lens , quantity:1
- D=25.4 F=50.0 N-BK7 B Coated Plano Convex Lens, quantity:1
- D=25.4mm, F=50mm, Telecom Achromat, -C Coated, quantity:1
- D=25.4mm, F=300mm, Telecom Achromat, -C Coated, quantity:1
- Ø1" Long pass Dichroic Mirror, 900 nm Cut-On, quantity:1
- Ø1" Long pass Dichroic Mirror, 1180 nm Cut-On, quantity:1
- 1" Polarizing Beamsplitter Cube, 620 - 1000 nm, quantity:2
- Ø2" 10:90 (R:T) UVFS Plate Beamsplitter, Coating: 700-1100 nm, t = 8mm, quantity:1
- Kinematic Center Axis Mirror Mount For 2" Dia Optics, Metric, quantity:5
- Metric Lens mounting ring for 1" dia optic, 5 pack, quantity:2
- Ø12.7 mm Optical Post, SS, M4 Setscrew, M6 Tap, L = 75 mm, 5 Pack , quantity:4
- Ø12.7 mm Post Holder, Spring-Loaded Hex-Locking Thumbscrew, L=75 mm, 5 Pack, quantity:4
- Ø1.25" Studded Pedestal Base Adapter, 1/4"-20 Thread, 5 Pack , quantity:4
- Clamping Fork, 1.24" Counterbored Slot, Universal, 5 Pack , quantity:4
- Post-Mountable Standard Iris, Ø25.0 mm Max Aperture, M4 Threaded Stud, Pack of 5, quantity:1
- 25 mm Translation Stage with Standard Micrometer, M6 Taps , quantity:1
- Rotation Mount for Ø1" (25.4 mm) Optics, External SM1 Threads , quantity:1
- Dovetail Optical Rail, 75 mm, Metric , quantity:4
- Dovetail Rail Carrier, 50.8 mm x 25.4 mm, M6 Counterbore, M4 Taps, quantity:4
- 25mm SPUTTERED EDGEPASS FILTER, LONGPASS 450nm , quantity:1
- Premium Longpass Filter, Cut-On Wavelength: 750 nm, quantity:1
- 6 Hole Filter Wheel w/ Base Assembly & 5 NE Filter, quantity:1
- LED, 635 nm, 170mW, TO-39 w/ Ball Lens, quantity:2
Technical Characteristics
- Ø2’’ Protected Silver Mirror,10 Pack,quantity:1
- Sapphire window 25.4mm dia., 5mm thick, Uncoated , quantity:1
- D=25.4 F=300.0 N-BK7 B Coated Plano Convex Lens , quantity:1
- D=25.4 F=50.0 N-BK7 B Coated Plano Convex Lens, quantity:1
- D=25.4mm, F=50mm, Telecom Achromat, -C Coated, quantity:1
- D=25.4mm, F=300mm, Telecom Achromat, -C Coated, quantity:1
- Ø1" Long pass Dichroic Mirror, 900 nm Cut-On, quantity:1
- Ø1" Long pass Dichroic Mirror, 1180 nm Cut-On, quantity:1
- 1" Polarizing Beamsplitter Cube, 620 - 1000 nm, quantity:2
- Ø2" 10:90 (R:T) UVFS Plate Beamsplitter, Coating: 700-1100 nm, t = 8mm, quantity:1
- Kinematic Center Axis Mirror Mount For 2" Dia Optics, Metric, quantity:5
- Metric Lens mounting ring for 1" dia optic, 5 pack, quantity:2
- Ø12.7 mm Optical Post, SS, M4 Setscrew, M6 Tap, L = 75 mm, 5 Pack , quantity:4
- Ø12.7 mm Post Holder, Spring-Loaded Hex-Locking Thumbscrew, L=75 mm, 5 Pack, quantity:4
- Ø1.25" Studded Pedestal Base Adapter, 1/4"-20 Thread, 5 Pack , quantity:4
- Clamping Fork, 1.24" Counterbored Slot, Universal, 5 Pack , quantity:4
- Post-Mountable Standard Iris, Ø25.0 mm Max Aperture, M4 Threaded Stud, Pack of 5, quantity:1
- 25 mm Translation Stage with Standard Micrometer, M6 Taps , quantity:1
- Rotation Mount for Ø1" (25.4 mm) Optics, External SM1 Threads , quantity:1
- Dovetail Optical Rail, 75 mm, Metric , quantity:4
- Dovetail Rail Carrier, 50.8 mm x 25.4 mm, M6 Counterbore, M4 Taps, quantity:4
- 25mm SPUTTERED EDGEPASS FILTER, LONGPASS 450nm , quantity:1
- Premium Longpass Filter, Cut-On Wavelength: 750 nm, quantity:1
- 6 Hole Filter Wheel w/ Base Assembly & 5 NE Filter, quantity:1
- LED, 635 nm, 170mW, TO-39 w/ Ball Lens, quantity:2
Procedure
Contact Persons
Abstract
BBO-crystal for OPA,type-II,theta=27°,phi=30°, with P-coating.Unmounted .Crystal dimensions: WxH: 5x5mm2, length:3mm. Quantity:1
BBO-crystal for SHG 1600nm=>80nm, with P-coating. Mounted in 1” holder.Crystal dimensions: WxH: 5x5mm2, length:3mm.Quantity:1
Technical Characteristics
BBO-crystal for OPA,type-II,theta=27°,phi=30°, with P-coating.Unmounted .Crystal dimensions: WxH: 5x5mm2, length:3mm. Quantity:1
BBO-crystal for SHG 1600nm=>80nm, with P-coating. Mounted in 1” holder.Crystal dimensions: WxH: 5x5mm2, length:3mm.Quantity:1
Procedure
Contact Persons
Abstract
LASER safety glasses, 800 nm diode and YAG laser wavelengths, quantity:3
Gimbal Prism Mount, 1”, 100 TPI Adjustment Screws, quantity:2
Technical Characteristics
LASER safety glasses, 800 nm diode and YAG laser wavelengths, quantity:3
Gimbal Prism Mount, 1”, 100 TPI Adjustment Screws, quantity:2
Procedure
Contact Persons
To: 11/12/2019 14:00
Halide perovskites is an emerging class of high-performance semiconductors which operate in the visible and infrared energy range. These old materials were recently popularized owing to the development of efficient photovoltaic devices, spearheaded by CH3NH3PbI3. Starting from the modest 3% in 2009, halide perovskites can now consistently produce competitive power-conversion-efficiencies (PCE > 20%), thus representing one of the fastest developing solar cell technologies known to date. The remarkable physical properties of the halide perovskites stem from their unique electronic structure, which lends the semiconductors beneficial characteristics, such as high absorption coefficients and charge-carrier mobilities.
In this talk, the compositional space of the halide perovskites, AMX3, (A+ = Cs, CH3NH3, HC(NH2)2); (M2+ = Ge, Sn, Pb); (X- = Cl, Br, I) will be outlined and the structural chemistry of the materials will be detailed. The central role of the crystal structure, where small changes can significantly alter the optical, electrical and electronic properties of the perovskites will be discussed and the synthetic chemistry concepts that can “control” these subtle modifications will be elaborated. Furthermore, following the dimensional reduction principle, the synthesis and properties of low dimensional systems such as “hollow” perovskites, two dimensional perovskites and perovskite polytypes will be discussed.