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Metamaterials for futureinformation and
computer technologies.
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To elaborate effective nano-sized single photonsources on deand and to integrate the innano-chips of optical and !uantu coputers.Moreover "e "ant to create ne" ar#et of
nano-sized optical and !uantu chips.
Our Super Goal
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NV-centers in Diamonds$ %table source of photons$ &peration at roo teperatures
$'elativel( siple and cheapanufacturing
$ )road operation band "idth$ *reat spin decoherence ties
+1. s
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First Single Photon Source
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Prototype Shortcomings
avelength /00 n
%pectral "idth +M l&&nre!uenc( 130 #z
4npolarised output
5ontinuous pupingresults in lo" efficienc(
Nondirectional and unpolarizedradiation fro nanodiaonds resultsin lo" efficienc(, that is onl( sall partof eitted photons are fl(ing toconsuer
&ptical fiber toconsuer
%ingle photon eission rate is liited b( lifetie ofe6cited state and sall po"er of continuous puping
7arge size of fibers +8 10 9does not allo" to integrate thissource on nanochip
( )2
0 0.1g
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Our de!ice has no these limitationsPrototype Our Source
avelength /00 n avelength /00 n
%pectral "idth +M l&&n %pectral "idth +M 8 2&&n +due tobroadband MM
re!uenc( 130 #z re!uenc( 10*z +due to high densit( of statesof MM
g+2+0:0.1 g+2+0:0.03 due to pulsed puping and MM
4npolarized output ;olarized output T >77
The design iplies the integration on nanochips
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Operation principle of prototype
Operation principle of our SPS
Ma#ing use of MM allo"s us to reduce spontaneous eission lifetie b( 2-? &'
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First e#perimental e!idence of spontaneouslife time reduction %y &MM
+>ppl ;h(s ) +2010 100C 213D21
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No!el e#citiong confirmation of our ideaNanodiamonds on HMMNanodiamonds on cover glass
@nhanceent factor is greater than 20 no"BBB
7ifetie21 ns
7ifetie1 ns
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%o the preliinar( results of 2011 (earconfir our idea again. Moreover it "as
possible to deonstrate increasing in %;%eission rate +nuber of photons per second
b( factor 10 in coparison "ithprevious e6perients.
%ufficient funding "ill definitel( allo" us toreach our goal and to provide increasing in
%;% eission rate b( factor 100 andeven ore.
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&ptical puping b( ps pulse of%;@5I>7 shape results indecreasing of g+2+0 and inincreasing of energ( efficienc(.
Operation principle of our single channel SPS '" stage+
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"" stage ' * - , years+ is developent stage.unctioning nanosized %;% protot(pe "ill be built5ost of developent is E3-10 illion.
)esides single channel %;%, the ultichannelchip "ill be created "ith full control of eissiontie in all channels +%ingle photons on deand.
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I
I
ps laser pulse of special shape "ith&'IJ&NT>7 polarization +(ello" arro" "ille6cite onl( N= center in nanodiaonds "ith&'IJ&NT>7 antennas attached.;hotons "ill go to consuer over red "aveguides
ps laser pulse of special shape "ith =@'TI5>7polarization +(ello" arro" "ill e6cite onl( N=center in nanodiaonds "ith =@'TI5>7antennas attached. ;hotons "ill go to consuerover red "aveguides
(perbolicetaaterial
Operation principle of multichannel SPS '"" stage+
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ey features of our SPS$ Ma#ing use of N=-center in nanodiaonds as stable
source of photons.
$ Ma#ing use of nanoantennas and h(perbolicetaaterials as eission and photon!ualit( enhancers.
$ Ma#ing use of special shape of ps e6citation pulses.$ igh level integration of nanodiaonds, nanoantennas
and nanovaeguides on the etaaterial substratepaves the "a( to developent of !uantu and opticalnanochips.
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