Fwd: Re: Ferroelectric Thin Films Like Lead Zirconate Titanate and Barium Strontium Titanate Characterised by Spectroscopic Ellipsometry
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2019-01-04T09:08:03-06:00
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[1/3] Fwd: Re: Ferroelectric Thin Films Like Lead Zirconate Titanate and Barium Strontium Titanate Characterised by Spectroscopic Ellipsometry
2019-01-04T09:08:03-06:00
·
Norman Wootan
<[email protected]>
Message-ID:
<[email protected]>
FYI Ole, You will find this interesting. -------- Forwarded Message -------- Subject: Re: Ferroelectric Thin Films Like Lead Zirconate Titanate and Barium Strontium Titanate Characterised by Spectroscopic Ellipsometry Date: Fri, 4 Jan 2019 08:48:09 -0600 From: Norman Wootan <[email protected]> To: Bert Pool <[email protected]>, Bob Paddock <[email protected]>, Phil Rembold <[email protected]> Bert, an interesting note regarding a thin film nonlinear dielectric skin for a space craft capable for AG operation goes back to the description of the recovered light wight foil like skin material from the Roswell crash site. The light weight material was probably this same technology. On 1/4/2019 8:43 AM, Norman Wootan wrote: > > To make this Anti-gravity connection more clear, you have to go to > page 51 of this document. > http://www.rexresearch.com/hooper/NewHorizons.pdf Pure TTB. > Remember the famous Wright Patterson AFB meeting by top Industrial > Contractors where the dielectric constant was outlined for Counter > Barry (anti-gravity) aircraft. In the space race we have far > surpassed the basic parameters laid out at this Conference in regard > to the necessary dielectric needed for AG. T.Townsend Brown There is > no doubt as to the use of the cited PZT dielectric . > > On 1/4/2019 8:08 AM, Bert Pool wrote: >> >> On the AZO website >> <https://www.azom.com/article.aspx?ArticleID=3759>you sent a link to, >> a description says: >> >> /PZT thin films have been grown directly on Pt (100nm) / Ti / SiO//_2 >> /// c-Si substrate. Due to the Pt thickness, a pseudo 3-phase model - >> air / PZT / Pt - has been used. The PZT coating has been described >> using a 3 layers stack *where the density of the PZT decreases from >> the bottom to the top surface. *This index variation is described >> using the Bruggeman Effective Medium Approximation./ >> >> I find it very interesting thatthe AZo company is creating a >> dielectric whose K is changing from bottom to top. >> >> T. Townsend Brown's electrogravitic devices were based upon this >> exact process! TTB created a non-linear dielectric by mixing lead >> oxide in paraffin, where the density of the lead oxide changed from >> top to bottom in his custom dielectric. He also created a nonlinear >> capacitance by using two capacitor plates of different areas, but the >> effects were better with special dielectrics. >> >> Further, this web site says: >> /Barium strontium titanate (BST) is the established dielectric >> capacitor material for future DRAM devices, allowing a significant >> reduction of cell capacitor size due to its high-k properties./ >> >> It seems to me that this company is the perfect manufacturer to build >> the most advanced TT Brown non-linear, high K capacitors for >> electrogravitic research, certainly way beyond what Brown himself had >> available in the '30s, 40's and 1950's. Heck, they are already >> building the nonlinear capacitance dielectrics, but not for high >> voltage purposes. >> >> Or maybe they are, and we just don't know it? >> >> Bert >> >> / >> / >> >> / >> / >> >> On 1/4/2019 5:02 AM, Norman Wootan wrote: >>> https://www.azom.com/article.aspx?ArticleID=3759 >>> >>> Sent from Yahoo Mail on Android >>> <https://go.onelink.me/107872968?pid=InProduct&c=Global_Internal_YGrowth_AndroidEmailSig__AndroidUsers&af_wl=ym&af_sub1=Internal&af_sub2=Global_YGrowth&af_sub3=EmailSignature> >>> >>> During the time Joel & I were working with MRA, 1995, I contacted a >>> magnet mfg in China to make prototype magnet that I called a "Light >>> magnet" for it had Fe, Ba, Ti and Zi. Looks like I was on the >>> right track back then. Joel said it had a light channel. The >>> Magneto-electric effect was the correct research path.
[2/3] Re: Fwd: Re: Ferroelectric Thin Films Like Lead Zirconate Titanate and Barium Strontium Titanate Characterised by Spectroscopic Ellipsometry
2019-01-04T10:54:11-06:00
·
Norman Wootan
<[email protected]>
Message-ID:
<[email protected]>
http://barrytaff.net/2014/12/anti-gravity-and-hyperspace-propulsion-one-step-closer-to-star-trek/ A very interesting read. Bert, take a look at the dielectric constant table. https://physics.info/dielectrics/ potassium tantalate niobate, 0 ℃ 34,000 WOW! On 1/4/2019 9:08 AM, Norman Wootan wrote: > > FYI > > Ole, You will find this interesting. > > > > -------- Forwarded Message -------- > Subject: Re: Ferroelectric Thin Films Like Lead Zirconate Titanate > and Barium Strontium Titanate Characterised by Spectroscopic Ellipsometry > Date: Fri, 4 Jan 2019 08:48:09 -0600 > From: Norman Wootan <[email protected]> > To: Bert Pool <[email protected]>, Bob Paddock > <[email protected]>, Phil Rembold <[email protected]> > > > > Bert, an interesting note regarding a thin film nonlinear dielectric > skin for a space craft capable for AG operation goes back to the > description of the recovered light wight foil like skin material from > the Roswell crash site. The light weight material was probably this > same technology. > > On 1/4/2019 8:43 AM, Norman Wootan wrote: >> >> To make this Anti-gravity connection more clear, you have to go to >> page 51 of this document. >> http://www.rexresearch.com/hooper/NewHorizons.pdf Pure TTB. >> Remember the famous Wright Patterson AFB meeting by top Industrial >> Contractors where the dielectric constant was outlined for Counter >> Barry (anti-gravity) aircraft. In the space race we have far >> surpassed the basic parameters laid out at this Conference in regard >> to the necessary dielectric needed for AG. T.Townsend Brown There is >> no doubt as to the use of the cited PZT dielectric . >> >> On 1/4/2019 8:08 AM, Bert Pool wrote: >>> >>> On the AZO website >>> <https://www.azom.com/article.aspx?ArticleID=3759>you sent a link >>> to, a description says: >>> >>> /PZT thin films have been grown directly on Pt (100nm) / Ti / >>> SiO//_2 /// c-Si substrate. Due to the Pt thickness, a pseudo >>> 3-phase model - air / PZT / Pt - has been used. The PZT coating has >>> been described using a 3 layers stack *where the density of the PZT >>> decreases from the bottom to the top surface. *This index variation >>> is described using the Bruggeman Effective Medium Approximation./ >>> >>> I find it very interesting thatthe AZo company is creating a >>> dielectric whose K is changing from bottom to top. >>> >>> T. Townsend Brown's electrogravitic devices were based upon this >>> exact process! TTB created a non-linear dielectric by mixing lead >>> oxide in paraffin, where the density of the lead oxide changed from >>> top to bottom in his custom dielectric. He also created a nonlinear >>> capacitance by using two capacitor plates of different areas, but >>> the effects were better with special dielectrics. >>> >>> Further, this web site says: >>> /Barium strontium titanate (BST) is the established dielectric >>> capacitor material for future DRAM devices, allowing a significant >>> reduction of cell capacitor size due to its high-k properties./ >>> >>> It seems to me that this company is the perfect manufacturer to >>> build the most advanced TT Brown non-linear, high K capacitors for >>> electrogravitic research, certainly way beyond what Brown himself >>> had available in the '30s, 40's and 1950's. Heck, they are already >>> building the nonlinear capacitance dielectrics, but not for high >>> voltage purposes. >>> >>> Or maybe they are, and we just don't know it? >>> >>> Bert >>> >>> / >>> / >>> >>> / >>> / >>> >>> On 1/4/2019 5:02 AM, Norman Wootan wrote: >>>> https://www.azom.com/article.aspx?ArticleID=3759 >>>> >>>> Sent from Yahoo Mail on Android >>>> <https://go.onelink.me/107872968?pid=InProduct&c=Global_Internal_YGrowth_AndroidEmailSig__AndroidUsers&af_wl=ym&af_sub1=Internal&af_sub2=Global_YGrowth&af_sub3=EmailSignature> >>>> >>>> During the time Joel & I were working with MRA, 1995, I contacted a >>>> magnet mfg in China to make prototype magnet that I called a "Light >>>> magnet" for it had Fe, Ba, Ti and Zi. Looks like I was on the >>>> right track back then. Joel said it had a light channel. The >>>> Magneto-electric effect was the correct research path.
[3/3] Re: Fwd: Re: Ferroelectric Thin Films Like Lead Zirconate Titanate and Barium Strontium Titanate Characterised by Spectroscopic Ellipsometry
2019-01-04T10:58:59-06:00
·
Norman Wootan
<[email protected]>
Message-ID:
<[email protected]>
https://www.popularmechanics.com/technology/infrastructure/a8778/skimming-the-surface-the-return-of-teslas-surface-waves-15322250/ Tesla revisited. On 1/4/2019 10:54 AM, Norman Wootan wrote: > > http://barrytaff.net/2014/12/anti-gravity-and-hyperspace-propulsion-one-step-closer-to-star-trek/ > A very interesting read. > > Bert, take a look at the dielectric constant table. > https://physics.info/dielectrics/ potassium tantalate niobate, 0 ℃ > 34,000 WOW! > > On 1/4/2019 9:08 AM, Norman Wootan wrote: >> >> FYI >> >> Ole, You will find this interesting. >> >> >> >> -------- Forwarded Message -------- >> Subject: Re: Ferroelectric Thin Films Like Lead Zirconate Titanate >> and Barium Strontium Titanate Characterised by Spectroscopic >> Ellipsometry >> Date: Fri, 4 Jan 2019 08:48:09 -0600 >> From: Norman Wootan <[email protected]> >> To: Bert Pool <[email protected]>, Bob Paddock >> <[email protected]>, Phil Rembold <[email protected]> >> >> >> >> Bert, an interesting note regarding a thin film nonlinear dielectric >> skin for a space craft capable for AG operation goes back to the >> description of the recovered light wight foil like skin material from >> the Roswell crash site. The light weight material was probably this >> same technology. >> >> On 1/4/2019 8:43 AM, Norman Wootan wrote: >>> >>> To make this Anti-gravity connection more clear, you have to go to >>> page 51 of this document. >>> http://www.rexresearch.com/hooper/NewHorizons.pdf Pure TTB. >>> Remember the famous Wright Patterson AFB meeting by top Industrial >>> Contractors where the dielectric constant was outlined for Counter >>> Barry (anti-gravity) aircraft. In the space race we have far >>> surpassed the basic parameters laid out at this Conference in regard >>> to the necessary dielectric needed for AG. T.Townsend Brown There >>> is no doubt as to the use of the cited PZT dielectric . >>> >>> On 1/4/2019 8:08 AM, Bert Pool wrote: >>>> >>>> On the AZO website >>>> <https://www.azom.com/article.aspx?ArticleID=3759>you sent a link >>>> to, a description says: >>>> >>>> /PZT thin films have been grown directly on Pt (100nm) / Ti / >>>> SiO//_2 /// c-Si substrate. Due to the Pt thickness, a pseudo >>>> 3-phase model - air / PZT / Pt - has been used. The PZT coating has >>>> been described using a 3 layers stack *where the density of the PZT >>>> decreases from the bottom to the top surface. *This index variation >>>> is described using the Bruggeman Effective Medium Approximation./ >>>> >>>> I find it very interesting thatthe AZo company is creating a >>>> dielectric whose K is changing from bottom to top. >>>> >>>> T. Townsend Brown's electrogravitic devices were based upon this >>>> exact process! TTB created a non-linear dielectric by mixing lead >>>> oxide in paraffin, where the density of the lead oxide changed from >>>> top to bottom in his custom dielectric. He also created a >>>> nonlinear capacitance by using two capacitor plates of different >>>> areas, but the effects were better with special dielectrics. >>>> >>>> Further, this web site says: >>>> /Barium strontium titanate (BST) is the established dielectric >>>> capacitor material for future DRAM devices, allowing a significant >>>> reduction of cell capacitor size due to its high-k properties./ >>>> >>>> It seems to me that this company is the perfect manufacturer to >>>> build the most advanced TT Brown non-linear, high K capacitors for >>>> electrogravitic research, certainly way beyond what Brown himself >>>> had available in the '30s, 40's and 1950's. Heck, they are already >>>> building the nonlinear capacitance dielectrics, but not for high >>>> voltage purposes. >>>> >>>> Or maybe they are, and we just don't know it? >>>> >>>> Bert >>>> >>>> / >>>> / >>>> >>>> / >>>> / >>>> >>>> On 1/4/2019 5:02 AM, Norman Wootan wrote: >>>>> https://www.azom.com/article.aspx?ArticleID=3759 >>>>> >>>>> Sent from Yahoo Mail on Android >>>>> <https://go.onelink.me/107872968?pid=InProduct&c=Global_Internal_YGrowth_AndroidEmailSig__AndroidUsers&af_wl=ym&af_sub1=Internal&af_sub2=Global_YGrowth&af_sub3=EmailSignature> >>>>> >>>>> During the time Joel & I were working with MRA, 1995, I contacted >>>>> a magnet mfg in China to make prototype magnet that I called a >>>>> "Light magnet" for it had Fe, Ba, Ti and Zi. Looks like I was on >>>>> the right track back then. Joel said it had a light channel. The >>>>> Magneto-electric effect was the correct research path.
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