US2004194690A1PendingUtilityA1
Coloured diamond
Priority: Dec 14, 2001Filed: Sep 5, 2003Published: Oct 7, 2004
Est. expiryDec 14, 2021(expired)· nominal 20-yr term from priority
Inventors:Daniel James TwitchenPhilip Maurice MartineauGeoffrey Alan ScarsbrookBaerbel DornMichael Cooper
C30B 25/105C30B 29/04Y10T428/30C30B 25/10C01B 32/28
44
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Claims
Abstract
A diamond layer of single crystal CVD diamond which is coloured, preferably which has a fancy colour, and which has a thickness of greater than 1 mm.
Claims
exact text as granted — not AI-modifiedWe claim:
1 . A diamond layer of single crystal CVD diamond which is coloured and which has a thickness greater than 1 mm.
2 . A diamond layer according to claim 1 which has a fancy colour.
3 . A diamond layer according to claim 2 wherein the colour is a fancy colour with a dominant brown component.
4 . A diamond layer according to claim 1 wherein the colour is a fancy orangey brown, orange-brown, pinkish brown, pink-brown or dark brown.
5 . A diamond layer according to claim 1 wherein the hue angle is less than 80 degrees.
6 . A diamond layer according to claim 1 wherein the hue angle is less than 75 degrees.
7 . A diamond layer according to claim 1 wherein the hue angle is less than 70 degrees.
8 . A diamond layer according to claim 1 which has a thickness greater than 2 mm.
9 . A diamond layer according to claim 1 which has a thickness greater than 3 mm.
10 . A layer of single crystal CVD diamond according to claim 1 which has one or more of the characteristics (i), (ii), (iii) observable in the majority volume of the layer, which comprises at least 55 percent of the whole volume of the layer:
(i) The majority volume of the layer contains one or more defect and impurity related colour centres that contribute to the absorption spectrum of the diamond as set out in the absorption coefficient column below:
Absorption coefficient Designation Starts Ends Peak (at peak) 270 nm 220 nm 325 nm 270 nm 0.1 cm −1 -30 cm −1 350 nm band 270 nm 450 nm 350 nm 0.3 cm −1 -20 cm −1 510 nm band 420 nm 640 nm 510 nm 0.1 cm −1 -10 cm −1 570/637 nm 500 nm 640 nm 570 nm 0.1 cm −1 -5 cm −1 Designation Form of Curve Absorption Coefficient Ramp Rising background of form Contribution at 510 nm Absorption coefficient (cm −1 ) = is: <3 cm −1 C × λ −3 (C = constant, λin μm)
(ii) The majority volume of the layer contains defect and impurity related centres that contribute to the luminescence spectrum as set out in the Normalised luminescence intensity column of the table below, when measured in the manner described herein using Ar ion 514 nm laser excitation at 77 K:
Normalised luminescence intensity of zero phonon line Designation Starts Ends Peak at 77 K 575 nm 510 nm 680 nm 575 nm 0.02-80 637 nm 635 nm 800 nm 637 nm 0.01-300
(iii) The majority volume of the CVD diamond layer exhibits a ratio of normalised 637 nm1575 nm luminescence, measured in the manner described herein, which is in the range 0.2-10.
11 . A diamond layer according to claim 10 wherein the majority volume comprises at least 80 percent of the whole volume of the layer.
12 . A diamond layer according to claim 10 wherein the majority volume comprises at least 95 percent of the whole volume of the layer.
13 . A diamond layer according to claim 10 wherein the majority volume of the layer is formed from a single growth sector.
14 . A diamond layer according to claim 10 wherein the colour centre that contributes to the absorption spectrum of a diamond at 270 nm has the characteristics:
Absorption
Designation
Starts
Ends
Peak
coefficient (at peak)
270 nm
235 nm
325 nm
270 nm
0.4 cm −1 -10 cm −1
15 . A diamond layer according to claim 10 wherein the colour centre that contributes to the absorption spectrum of a diamond at 270 nm has the characteristics:
Absorption
Designation
Starts
Ends
Peak
coefficient (at peak)
270 nm
235 nm
325 nm
270 nm
0.8 cm −1 -6 cm −1
16 . A diamond layer according to claim 10 wherein the colour centre that contributes to the absorption spectrum of a diamond at 350 nm has the characteristics:
Absorption
Designation
Starts
Ends
Peak
coefficient (at peak)
350 nm band
270 nm
450 nm
350 nm
1.0 cm −1 -8 cm −1
17 . A diamond layer according to claim 10 wherein the colour centre that contributes to the absorption spectrum of a diamond at 350 nm has the characteristics:
Absorption
Designation
Starts
Ends
Peak
coefficient (at peak)
350 nm band
270 nm
450 nm
350 nm
1.5 cm −1 -6 cm −1
18 . A diamond layer according to claim 10 wherein the colour centre that contributes to the absorption spectrum of a diamond at 510 nm has the characteristics:
Absorption
Designation
Starts
Ends
Peak
coefficient (at peak)
510 nm band
420 nm
640 nm
510 nm
0.2 cm −1 -4 cm −1
19 . A diamond layer according to claim 10 wherein the colour centre that contributes to the absorption spectrum of a diamond at 510 nm has the characteristics,
Absorption
Designation
Starts
Ends
Peak
coefficient (at peak)
510 nm band
420 nm
640 nm
510 nm
0.4 cm −1 -2 cm −1
20 . A diamond layer according to claim 10 wherein the colour centre that contributes to the absorption spectrum of a diamond at 570/637 nm has the characteristics:
Absorption
Designation
Starts
Ends
Peak
coefficient (at peak)
570/637 nm
500 nm
640 nm
570 nm
0.3 cm −1 -3 cm −1
21 . A diamond layer according to claim 10 wherein the colour centre that contributes to the absorption spectrum of a diamond at 570/637 nm has the characteristics:
Absorption
Designation
Starts
Ends
Peak
coefficient (at peak)
570/637 nm
500 nm
640 nm
570 nm
0.3 cm −1 -1.5 cm −1
22 . A diamond layer according to claim 10 wherein the ramp has the characteristics:
Absorption
coefficient
Designation
Form of Curve
(at peak)
Ramp
Rising background of form
Contribution at
Absorption coefficient (cm −1 ) = C × λ −3
510 nm is:
(C = constant, λin μm)
<1.5 cm −1
23 . A diamond layer according to claim 10 wherein the ramp has the characteristics:
Absorption
coefficient
Designation
Form of Curve
(at peak)
Ramp
Rising background of form
Contribution at
Absorption coefficient (cm −1 ) = C × λ −3
510 nm is:
(C = constant, λin μm)
<0.8 cm −1
24 . A diamond layer according to claim 10 wherein the colour centre that contributes to the luminescence spectrum of a diamond at 575 nm has the characteristics:
Normalised luminescence
intensity of zero phonon line
Designation
Starts
Ends
Peak
at 77K
575 nm
570 nm
680 nm
575 nm
0.05-60
25 . A diamond layer according to claim 10 wherein the colour centre that contributes to the luminescence spectrum of a diamond at 575 nm has the characteristics:
Normalised luminescence
intensity of zero phonon line
Designation
Starts
Ends
Peak
at 77K
575 nm
570 nm
680 nm
575 nm
0.2-40
26 . A diamond layer according to claim 10 wherein the colour centre that contributes to the luminescence spectrum of a diamond at 637 nm has the characteristics:
Normalised luminescence
intensity of zero phonon line
Designation
Starts
Ends
Peak
at 77K
637 nm
635 nm
800 nm
637 nm
0.02-200
27 . A diamond layer according to claim 10 wherein the colour centre that contributes to the luminescence spectrum of a diamond at 637 nm has the characteristics:
Normalised luminescence
intensity of zero phonon line
Designation
Starts
Ends
Peak
at 77K
637 nm
635 nm
800 nm
637 nm
0.03-100
28 . A diamond layer according to claim 10 wherein the ratio of normalised 637 nm/575 nm luminescence is in the range 0.5 to 8.
29 . A diamond layer according to claim 10 wherein the ratio of normalised 637 nm/575 nm luminescence is in the range 2 to 5.
30 . A layer of single crystal diamond which is coloured and which has, observable in the majority volume of the layer wherein the majority volume comprises at least 55 percent of the whole volume of the layer, a low ramp as set out in the table below:
Absorption
Designation
Form of Curve
Coefficient
Ramp
Rising background of form
Contribution at
Absorption coefficient (cm −1 ) = C × λ −3
510 nm is:
(C = constant, λin μm)
<3 cm −1
and wherein the majority volume contains one or more of the defect and impurity related colour centres that contribute to the absorption spectrum of diamond as set out in the absorption coefficient column of the table below:
Absorption
coefficient
Designation
Starts
Ends
Peak
(at peak)
270 nm
220 nm
325 nm
270 nm
0.1 cm −1 -30 cm −1
350 nm band
270 nm
450 nm
350 nm +/− 10 nm
0.3 cm −1 -20 cm −1
510 nm band
420 nm
640 nm
510 nm +/− 50 nm
0.1 cm −1 -10 cm −1
570/637 nm
500 nm
640 nm
570 nm
0.1 cm −1 -5 cm −1
31 . A method of producing a coloured single crystal diamond layer includes the steps of providing a diamond substrate having a surface which is substantially free of crystal defects, providing a source of gas, dissociating the source gas to produce a synthesis atmosphere which contains 0,5 to 500 ppm nitrogen, calculated as molecular nitrogen, and allowing homoepitaxial diamond growth on the surface which is substantially free of crystal defects.
32 . A method according to claim 31 wherein the synthesis atmosphere contains 1 to 100 ppm nitrogen, calculated as molecular nitrogen.
33 . A method according to claim 31 wherein the synthesis atmosphere contains nitrogen in an amount suitable to enhance the size of the {100} growth sector and reduce the size of competing growth sectors.
34 . A method according to claim 31 wherein the density of defects is such of surface etch features related lo defects is below 5×10 3 mm 2 .
35 . A method according to claim 31 wherein the density of defects is such that the density of surface etch features related to defects is below 10 2 /mm 2 .
36 . A method according to claim 31 wherein the surface or surfaces of the diamond substrate on which CVD diamond growth occurs is selected from the {100}, {110}, {113} and {111} surfaces.
37 . A diamond layer produced by a method according to claim 31 .
38 . A gemstone produced from a diamond layer according to claim 1 or claim 37 .
39 . A gemstone according to claim 38 with a quality grading of SI1 or better.
40 . A gemstone according to claim 38 with a quality grading of VS1 or better.Join the waitlist — get patent alerts
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