2011 results:
1521. Mo­dern Microsco­py  
A microsco­pe is a ty­pi­cal tool to ana­ly­ze tiny struc­tu­res. Wi­de­ly used in sci­ence and in­dus­try, microsco­py is im­portant in…  
1522. Mo­dern Microsco­py - Mo­dern Microsco­py  
Mo­dern Microsco­py  
1523. Spintronik  
The in­jec­tion of the car­ri­er spin po­la­riza­t­i­on into the spin-VC­SEL was per­for­med op­ti­cal­ly in all our pre­vious…  
1524. Spintronik  
But most re­le­vant for ap­p­li­ca­ti­ons such as op­ti­cal data com­mu­ni­ca­ti­ons is the laser. For short-haul data…  
1525. Spintronik  
As part of our re­se­arch on spin in­jec­tion and de­tec­tion we suc­cee­ded in me­a­su­ring the spin re­la­xa­ti­on length – i.e. the…  
1526. Spintronik - Spin-op­to­elec­tro­nics  
Spin-op­to­elec­tro­nics With fur­ther mi­ni­a­tu­riza­t­i­on of micropro­ces­sors and in­te­gra­ted cir­cuits de­vice num­ber and…  
1527. MonoLaSi  
Re­fe­rence: M.R. Hof­mann et al., Emis­si­on dy­na­mics and op­ti­cal gain of 1.3µm (GaIn)(NAs)?GaAs la­sers, IEEE J. Quan­tum Elec­tron. 38,…  
1528. MonoLaSi  
We are using mul­ti­ple tech­ni­ques to in­ves­ti­ga­te the op­ti­cal gain, as the com­mon me­thod of Hakki and Paoli, a self…  
1529. MonoLaSi - GAIN SPEC­TROSCO­PY OF SE­MI­CON­DUC­TORS  
GAIN SPEC­TROSCO­PY OF SE­MI­CON­DUC­TORS Op­ti­cal gain due to in­ver­si­on in an ac­tive me­di­um is the basic re­qui­re­ment for the…  
1530. Cooperations - NA­TIO­NAL AND IN­TER­NA­TIO­NAL  
NA­TIO­NAL AND IN­TER­NA­TIO­NAL Max Planck In­sti­tu­te for Radio As­tro­no­my in Bonn Fer­di­nand-Braun-In­sti­tut Ber­lin Semiconductor…  
Search results 1521 until 1530 of 2011
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