Close X
Wednesday, December 4, 2024
ADVT 
Tech

Sniffer laser for hard-to-detect explosives

Darpan News Desk IANS, 21 Jul, 2014 07:26 AM
    There's bad news for bomb-sniffing dogs: researchers have found a way to increase the sensitivity of a light-based sensor to detect incredibly minute amounts of explosives.
     
    The tiny laser sensor can even sniff out a hard-to-detect explosive called pentaerythritol tetranitrate (PETN), a favourite among terrorists.
     
    Small amounts of PETN pack a powerful punch and being a plastic, it escapes x-ray machines when not connected to detonators.
     
    PETN was found in Richard Reid's shoe bomb in 2001 and Umar Farouk Abdulmtallab's underwear bomb in 2009.
     
    “The ability to magnify a small trace of an explosive to create a detectable signal is a major development in plasmon sensor technology,” said lead researcher Xiang Zhang, a professor of mechanical engineering at University of California Berkeley.
     
    During trials, the laser sensor device successfully detected very low concentration of various explosives, including dinitrotoluene (DNT), ammonium nitrate and nitrobenzene.
     
    According to the study, the new sensor could have many advantages over current bomb-screening methods.
     
    Bomb-sniffing dogs are expensive to train and they get tired.
     
    Swabs, commonly used at airports to detect explosive residue, have relatively low-sensitivity and involve physical contact.
     
    "Our technology could lead to a bomb-detecting chip for a handheld device that can detect the tiny-trace vapour in the air of the explosive's small molecules,” informed co-author Ren-Min Ma, an assistant professor of physics at Peking University in China.
     
    The sensor could also be developed into an alarm for unexploded land mines that are otherwise difficult to detect, the researchers said.
     
    The nanoscale plasmon sensor used in the lab experiments is much smaller than other explosive detectors on the market.
     
    Zhang said the new sensor creates a much stronger signal than the passive plasmon sensors currently available, which work by detecting shifts in the wavelength of light.
     
    The findings were published in journal Nature Nanotechnology.

    MORE Tech ARTICLES

    Are you among 44 Indians shortlisted for one-way Mars trip?

    Are you among 44 Indians shortlisted for one-way Mars trip?
    Time to rejoice but pray too as The Netherlands-based nonprofit organisation Mars One has shortlisted 44 Indians - including 17 women - among 705 aspirants for its planned one-way trip to Mars in 2024.

    Are you among 44 Indians shortlisted for one-way Mars trip?

    Fasten your seat belts! 'Time machine' to send you on space voyage

    Fasten your seat belts! 'Time machine' to send you on space voyage
    Get ready to travel to the first “realistic virtual” universe where you can experience the cosmic evolution in a super-high resolution by zooming forward and backward in time.

    Fasten your seat belts! 'Time machine' to send you on space voyage

    Revealed: How black holes are formed

    Revealed: How black holes are formed
    What is more, all these stars have magnetic fields. And these are intensified further if they rotate rapidly, as in the case of the LGRBs.

    Revealed: How black holes are formed

    Spectacular! Watch how earth looks from space

    Spectacular! Watch how earth looks from space
    Everyone has dreamt of looking at the ‘Blue Plant’ from up there. Now you can watch earth live - as viewed from space.

    Spectacular! Watch how earth looks from space

    Now, a perfume radar to sense new scents

    Now, a perfume radar to sense new scents
    Creating those extravagant perfumes that exude an aura of elegance around those who wear them may no longer be the fiefdom of a few experts.

    Now, a perfume radar to sense new scents

    Virtual humans to transform global health care soon

    Virtual humans to transform global health care soon
    Expensive experimental tests often prescribed by physicians may soon become things of the past as scientists have now come closer to creating an in silico replica of the human body that would enable the virtual testing of bespoke treatments.

    Virtual humans to transform global health care soon