In case somebody made the meme because they need that paper and couldnt get it, enjoy.
Edit: generally, you can find a ton of hard to get papers by searching the first 5 or 6 words of the title plus "pdf" , "reasearchgate", or "arxiv" at the end of the search string
As much as I appreciate the ResearchGate mention, the paper is open-access right now on Wiley's site. Whatever's happening in OP's screenshot is either some kind of technical glitch or a clerical error that has since been resolved.
Meh. My general opinion on academic publishers is such that I'd rather pirate it to avoid giving them the page view anyway. Entities that exist to gate knowledge can universally go fuck themselves
Very true. I've benefited from doing that countless times, and I keep final drafts of all of my work in folders organized by publisher title explicitly so that I can pass it forward if anybody ever emails me looking for something ive written that is now behind a paywall
(I deleted my last comment because it ended up more vitriolic than I want on the internet forever, but for anybody reading this afterwards the gist of my deleted comment earlier in the thread was "I do not respect academic publishers")
Fuck publishers, the only reason I go along is that it is necessary for my career. If I could I'd publish everything on my own website.
You're very welcome to ask me for any paper I published.
Obligatory response that this is highly dependent upon the field and your experience. Of the four authors I contacted for copies to their paper in my tenure as a child protection caseworker, none of them even replied to me let alone gave me a copy of their paper. I don’t know if it was because of the fields (psychology and social science) or because I emailed them from my .gov.au email but this advice doesn’t always hold true.
I'd definitely avoid using the gov email address. This may be another difference between my field and what you are doing, but if a .gov emailed me asking for my work I'd redirect them to my security manager, expecting it to be one of those "oops you got phished, be more careful!" type of cyber training emails. I'd also offer that you might look up the person you're emailing; I've published under at least 2 different student email addresses that I no longer have access to. If you happen to know my name you'll find my current contact info pretty quickly on google, but if you email gust@undergrad.edu that email is going straight into the void
oh so they're just trying to trick people into signing up who don't need to like those ads with a big download button people put on sourceforge or similar...
Oh no, how will I ever know about Dramatic and Elusive Resonant Lattice Kerker Effect in the Nonlinear Response of Plasmonic Lattices now? Does anyone have a Dramatic and Elusive Resonant Lattice Kerker Effect in the Nonlinear Response of Plasmonic Lattices guy?
Now whatcha got here is an ol fashion Plasmotic Lattice, made right here in the good ol US of A. See this model has a two-stroke Kerker-effect Hemi so heh it’s got heh a little giddyup
I've had good results in the past just messaging the author and having them send their paper via email. Turns out real scientists are actually really excited abour sharing their findings.
Dramatic and Elusive Resonant Lattice Kerker Effect in the Nonlinear Response of Plasmonic Lattices
Key Points
A plasmonic metasurface demonstrates the resonant lattice Kerker effect, suppressing reflection in a narrow spectral band through simultaneous electric dipole and lattice mode excitation.
The effect is observed in the nonlinear optical response of periodic plasmonic structures, making it both rare and difficult to achieve experimentally.
This research describes a plasmonic metasurface that supports the resonant lattice Kerker effect, which manifests as suppressed reflection within a narrow spectral range. The suppression occurs because electric dipole and magnetic-type lattice resonances are excited simultaneously, causing their radiated fields to interfere destructively in the backward direction, per Wiley Online Library.
The Kerker effect, in its classical form, describes conditions under which a particle's forward and backward scattering become asymmetric due to the interplay of electric and magnetic multipoles. The "first Kerker condition" produces zero backscattering when electric and magnetic dipole moments are equal in magnitude and phase. Achieving this in practice, particularly in plasmonic systems and at nonlinear frequencies, has proven difficult.
Periodic plasmonic arrays (lattices) add another layer of physics. Wood's anomalies and lattice resonances can hybridize with the localized modes of individual nanostructures, producing sharp spectral features. According to ACS Nano, metal-insulator-metal sandwich nanodisks in periodic arrays create narrow, high-resonance peaks through radiation mode hybridization with Wood's anomaly, generating vivid colors in both reflection and transmission.
The broader field of Mie-resonant metaphotonics, as reviewed in Advances in Optics and Photonics, examines how electric and magnetic multipoles govern light interaction in engineered structures, including the first and second Kerker conditions.
Nonlinear Dimension
What makes this particular result "dramatic and elusive" is that the Kerker-type interference is observed in the nonlinear response of the lattice. Nonlinear metasurfaces have been studied for second-harmonic generation and beam shaping. Work published in ACS Photonics demonstrated nonlinear beam shaping with plasmonic split-ring resonators, controlling second-harmonic wavefronts through local phase and amplitude manipulation. A more recent study in Nano Letters showed hybrid nonlinear metasurface lenses that generate and focus second-harmonic light.
Extending the lattice Kerker condition into the nonlinear regime is harder because the nonlinear polarization sources are weaker, spectrally shifted, and subject to different symmetry constraints than their linear counterparts. The paper published in Wiley's Nanophotonics journal reports success in observing this effect experimentally.
Further Reading
The primary paper is available at Wiley Online Library and provides the full experimental and theoretical treatment. For broader context on Mie resonances and Kerker conditions in metaphotonics, the review in Advances in Optics and Photonics offers a comprehensive multipolar analysis.
39 Comments
Gust@piefed.social · 100 pts · 45d
In case somebody made the meme because they need that paper and couldnt get it, enjoy.
Edit: generally, you can find a ton of hard to get papers by searching the first 5 or 6 words of the title plus "pdf" , "reasearchgate", or "arxiv" at the end of the search string
TheTechnician27@lemmy.world · 57 pts · 45d
As much as I appreciate the ResearchGate mention, the paper is open-access right now on Wiley's site. Whatever's happening in OP's screenshot is either some kind of technical glitch or a clerical error that has since been resolved.
Gust@piefed.social · 55 pts · 45d
Meh. My general opinion on academic publishers is such that I'd rather pirate it to avoid giving them the page view anyway. Entities that exist to gate knowledge can universally go fuck themselves
Nurse_Robot@lemmy.world · 33 pts · 45d
Obligatory reminder to just email the authors, they'll give it to you for free 99% of the time
Gust@piefed.social · 20 pts · 45d
Very true. I've benefited from doing that countless times, and I keep final drafts of all of my work in folders organized by publisher title explicitly so that I can pass it forward if anybody ever emails me looking for something ive written that is now behind a paywall
(I deleted my last comment because it ended up more vitriolic than I want on the internet forever, but for anybody reading this afterwards the gist of my deleted comment earlier in the thread was "I do not respect academic publishers")
ranzispa@mander.xyz · 10 pts · 45d
Fuck publishers, the only reason I go along is that it is necessary for my career. If I could I'd publish everything on my own website. You're very welcome to ask me for any paper I published.
Instigate@aussie.zone · 12 pts · 45d
Obligatory response that this is highly dependent upon the field and your experience. Of the four authors I contacted for copies to their paper in my tenure as a child protection caseworker, none of them even replied to me let alone gave me a copy of their paper. I don’t know if it was because of the fields (psychology and social science) or because I emailed them from my .gov.au email but this advice doesn’t always hold true.
Gust@piefed.social · 2 pts · 44d
I'd definitely avoid using the gov email address. This may be another difference between my field and what you are doing, but if a .gov emailed me asking for my work I'd redirect them to my security manager, expecting it to be one of those "oops you got phished, be more careful!" type of cyber training emails. I'd also offer that you might look up the person you're emailing; I've published under at least 2 different student email addresses that I no longer have access to. If you happen to know my name you'll find my current contact info pretty quickly on google, but if you email gust@undergrad.edu that email is going straight into the void
icelimit@lemmy.ml · 0 pts · 42d
Not within the time frame that you're interested in. I'm not waiting anywhere between a day and 3 months for them to see and reply to my email.
T3CHT@sh.itjust.works · 10 pts · 44d
SCI HUB. Say it with me sci-hub Is it just me? Sci hub free article access ftw?
Arxiv is pretty great too, but not everything is physics.
prettybunnys@piefed.social · 6 pts · 45d
You can also email the author(s) and they’ll send it to you often times
rockSlayer@lemmy.blahaj.zone · 70 pts · 45d
My favorite scientific journal is SciHub
Beth@piefed.social · 8 pts · 45d
Got me through my fieldwork after grad school.
Maroon@lemmy.world · 50 pts · 45d
ranzispa@mander.xyz · 39 pts · 45d
Unfortunately not, Anna's archive has got some which are not on sci-hub, but not much more
fossilesque@mander.xyz · 10 pts · 45d
Jessicat@lemmy.world · 15 pts · 45d
Can you click the pdf text above the circled portion? It might be a button.
Venator@lemmy.nz · 9 pts · 45d
oh so they're just trying to trick people into signing up who don't need to like those ads with a big download button people put on sourceforge or similar...
87Six@lemmy.zip · 7 pts · 45d
If that works strap me on a toad and roll me down the road
Paulemeister@feddit.org · 13 pts · 43d
All research should be open access, there is no room for publishers making money off of science.
wolframhydroxide@sh.itjust.works · 6 pts · 43d
Elsevier was literally founded by the father of Ghislaine Maxwell. He clearly passed on his moral framework to his daughter.
Danarchy@lemmy.nz · 11 pts · 45d
Oh no, how will I ever know about Dramatic and Elusive Resonant Lattice Kerker Effect in the Nonlinear Response of Plasmonic Lattices now? Does anyone have a Dramatic and Elusive Resonant Lattice Kerker Effect in the Nonlinear Response of Plasmonic Lattices guy?
Krudler@lemmy.world · 9 pts · 45d
Been an DERLKE-NRPL guy for decades whatdda ya need to knoe
emeralddawn45@lemmy.dbzer0.com · 5 pts · 45d
Yeah I'm a darkly-nerple guy too, AMA.
MrShankles@reddthat.com · 3 pts · 45d
What is a Kerker Effect and a Plasmonic Lattice? How do these things affect me in my day to day life?
Danarchy@lemmy.nz · 3 pts · 44d
Now whatcha got here is an ol fashion Plasmotic Lattice, made right here in the good ol US of A. See this model has a two-stroke Kerker-effect Hemi so heh it’s got heh a little giddyup
MrShankles@reddthat.com · 3 pts · 44d
Then put that shit right there on layaway. I'ma take fer of 'em right meow. Yeeehaaawwww!
HeyThisIsntTheYMCA@lemmy.world · 2 pts · 44d
How many NRPLs can an amateur safely manage
Krudler@lemmy.world · 2 pts · 44d
Between 3
HeyThisIsntTheYMCA@lemmy.world · 1 pts · 44d
what about unsafely? that sounds more my style
grranibal@lemmy.zip · 8 pts · 45d
Schrödinger paper
Nouvellalia@lemmy.world · 7 pts · 45d
Kerker? I hardly know her!
MrShankles@reddthat.com · 1 pts · 45d
Nice
Duke_Nukem_1990@feddit.org · 5 pts · 43d
I've had good results in the past just messaging the author and having them send their paper via email. Turns out real scientists are actually really excited abour sharing their findings.
noxypaws@pawb.social · 4 pts · 44d
um actually it's Wile E Coyote
but yeah this is some bullshit!
MonkderVierte@lemmy.zip · 1 pts · 43d
No, it's Wiley online library.
Mostly_Gristle@lemmy.world · 1 pts · 44d
Am I the only one who read "lattice" and "lattices" as "lettuce" and "lettuces?"
imgcat@lemmy.ml · 4 pts · 44d
Yes
nibbler@discuss.tchncs.de · 0 pts · 44d
Certainly not
Zerush@lemmy.ml · -12 pts · 45d
Asking Andisearch
Dramatic and Elusive Resonant Lattice Kerker Effect in the Nonlinear Response of Plasmonic Lattices
Key Points
This research describes a plasmonic metasurface that supports the resonant lattice Kerker effect, which manifests as suppressed reflection within a narrow spectral range. The suppression occurs because electric dipole and magnetic-type lattice resonances are excited simultaneously, causing their radiated fields to interfere destructively in the backward direction, per Wiley Online Library.
Background and Context
The Kerker effect, in its classical form, describes conditions under which a particle's forward and backward scattering become asymmetric due to the interplay of electric and magnetic multipoles. The "first Kerker condition" produces zero backscattering when electric and magnetic dipole moments are equal in magnitude and phase. Achieving this in practice, particularly in plasmonic systems and at nonlinear frequencies, has proven difficult.
Periodic plasmonic arrays (lattices) add another layer of physics. Wood's anomalies and lattice resonances can hybridize with the localized modes of individual nanostructures, producing sharp spectral features. According to ACS Nano, metal-insulator-metal sandwich nanodisks in periodic arrays create narrow, high-resonance peaks through radiation mode hybridization with Wood's anomaly, generating vivid colors in both reflection and transmission.
The broader field of Mie-resonant metaphotonics, as reviewed in Advances in Optics and Photonics, examines how electric and magnetic multipoles govern light interaction in engineered structures, including the first and second Kerker conditions.
Nonlinear Dimension
What makes this particular result "dramatic and elusive" is that the Kerker-type interference is observed in the nonlinear response of the lattice. Nonlinear metasurfaces have been studied for second-harmonic generation and beam shaping. Work published in ACS Photonics demonstrated nonlinear beam shaping with plasmonic split-ring resonators, controlling second-harmonic wavefronts through local phase and amplitude manipulation. A more recent study in Nano Letters showed hybrid nonlinear metasurface lenses that generate and focus second-harmonic light.
Extending the lattice Kerker condition into the nonlinear regime is harder because the nonlinear polarization sources are weaker, spectrally shifted, and subject to different symmetry constraints than their linear counterparts. The paper published in Wiley's Nanophotonics journal reports success in observing this effect experimentally.
Further Reading
The primary paper is available at Wiley Online Library and provides the full experimental and theoretical treatment. For broader context on Mie resonances and Kerker conditions in metaphotonics, the review in Advances in Optics and Photonics offers a comprehensive multipolar analysis.
Sources: Wiley Online Library, ACS Nano, Optica, ACS Photonics, Nano Letters
FinalRemix@lemmy.world · 10 pts · 45d
Dr. Flattery the Hallucinating Slop Machine has no valid use. Fuck that noise.